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@@ -36,9 +36,15 @@ struct natsemi_rx {
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struct natsemi_nic {
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unsigned short ioaddr;
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- unsigned short tx_next;
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+ unsigned short tx_cur;
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+ unsigned short tx_dirty;
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+ unsigned short rx_cur;
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struct natsemi_tx tx[TX_RING_SIZE];
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struct natsemi_rx rx[NUM_RX_DESC];
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+ /* need to add iobuf as we cannot free iobuf->data in close without this
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+ * alternatively substracting sizeof(head) and sizeof(list_head) can also
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+ * give the same.*/
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+ struct io_buffer *iobuf[NUM_RX_DESC];
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struct spi_bit_basher spibit;
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struct spi_device eeprom;
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struct nvo_block nvo;
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@@ -54,7 +60,9 @@ struct natsemi_nic {
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#define RX_BUF_LEN 8192 /*buffer size should be multiple of 32 */
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#define RX_BUF_PAD 4
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#define RX_BUF_SIZE 1536
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-
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+#define OWN 0x80000000
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+#define DSIZE 0x00000FFF
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+#define CRC_SIZE 4
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66
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/* NATSEMI: Offsets to the device registers.
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Unlike software-only systems, device drivers interact with complex hardware.
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@@ -208,12 +216,12 @@ static struct nvo_fragment rtl_nvo_fragments[] = {
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*
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* @v NAT NATSEMI NIC
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*/
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- void nat_init_eeprom ( struct natsemi_nic *nat ) {
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+ void rtl_init_eeprom ( struct natsemi_nic *rtl ) {
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int ee9356;
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int vpd;
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/* Initialise three-wire bus */
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- nat->spibit.basher.op = &rtl_basher_ops;
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+ rtl->spibit.basher.op = &rtl_basher_ops;
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rtl->spibit.bus.mode = SPI_MODE_THREEWIRE;
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init_spi_bit_basher ( &rtl->spibit );
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@@ -241,17 +249,29 @@ static struct nvo_fragment rtl_nvo_fragments[] = {
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/**
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* Reset NIC
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*
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- * @v rtl NATSEMI NIC
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+ * @v NATSEMI NIC
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*
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* Issues a hardware reset and waits for the reset to complete.
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*/
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static void nat_reset ( struct nat_nic *nat ) {
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+ int i;
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/* Reset chip */
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outb ( ChipReset, nat->ioaddr + ChipCmd );
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mdelay ( 10 );
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- memset ( &nat->tx, 0, sizeof ( nat->tx ) );
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- nat->rx.offset = 0;
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+ nat->tx_dirty=0;
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+ nat->tx_cur=0;
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+ for(i=0;i<TX_RING_SIZE;i++)
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+ {
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+ nat->tx[i].link=0;
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+ nat->tx[i].cmdsts=0;
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+ nat->tx[i].bufptr=0;
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+ }
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+ nat->rx_cur = 0;
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+ outl(virt_to_bus(&nat->tx[0]),nat->ioaddr+TxRingPtr);
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+ outl(virt_to_bus(&nat->rx[0]), nat->ioaddr + RxRingPtr);
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+
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+ outl(TxOff|RxOff, nat->ioaddr + ChipCmd);
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/* Restore PME enable bit */
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outl(SavedClkRun, nat->ioaddr + ClkRun);
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@@ -265,7 +285,7 @@ static void nat_reset ( struct nat_nic *nat ) {
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*/
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static int nat_open ( struct net_device *netdev ) {
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struct natsemi_nic *nat = netdev->priv;
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- struct io_buffer *iobuf;
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+ //struct io_buffer *iobuf;
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int i;
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/* Disable PME:
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@@ -285,22 +305,38 @@ static int nat_open ( struct net_device *netdev ) {
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for ( i = 0 ; i < ETH_ALEN ; i++ )
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outb ( netdev->ll_addr[i], rtl->ioaddr + MAC0 + i );
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*/
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- /* Set up RX ring */
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+
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+ /*Set up the Tx Ring */
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+ nat->tx_cur=0;
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+ nat->tx_dirty=0;
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+ for (i=0;i<TX_RING_SIZE;i++)
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+ {
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+ nat->tx[i].link = virt_to_bus((i+1 < TX_RING_SIZE) ? &nat->tx[i+1] : &nat->tx[0]);
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+ nat->tx[i].cmdsts = 0;
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+ nat->tx[i].bufptr = 0;
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+ }
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+
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+
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+
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+
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+
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+ /* Set up RX ring */
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+ nat->rx_cur=0;
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for (i=0;i<NUM_RX_DESC;i++)
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{
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328
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- iobuf = alloc_iob ( RX_BUF_SIZE );
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- if (!iobuf)
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+ nat->iobuf[i] = alloc_iob ( RX_BUF_SIZE );
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+ if (!nat->iobuf[i])
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return -ENOMEM;
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nat->rx[i].link = virt_to_bus((i+1 < NUM_RX_DESC) ? &nat->rx[i+1] : &nat->rx[0]);
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- nat->rx[i].cmdsts = (u32) RX_BUF_SIZE;
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- nat->rx[i].bufptr = virt_to_bus(iobuf->data);
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+ nat->rx[i].cmdsts = (uint32_t) RX_BUF_SIZE;
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+ nat->rx[i].bufptr = virt_to_bus(nat->iobuf[i]->data);
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}
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/* load Receive Descriptor Register */
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- outl(virt_to_bus(&nat->rx[0]), ioaddr + RxRingPtr);
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+ outl(virt_to_bus(&nat->rx[0]), nat->ioaddr + RxRingPtr);
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DBG("Natsemi Rx descriptor loaded with: %X\n",inl(nat->ioaddr+RingPtr));
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/* setup Tx ring */
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@@ -325,8 +361,8 @@ static int nat_open ( struct net_device *netdev ) {
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361
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362
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- /*start the receiver and transmitter */
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- outl(RxOn|TxOn, nat->ioaddr + ChipCmd);
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+ /*start the receiver */
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+ outl(RxOn, nat->ioaddr + ChipCmd);
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return 0;
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@@ -337,15 +373,18 @@ static int nat_open ( struct net_device *netdev ) {
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*
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* @v netdev Net device
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*/
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-static void rtl_close ( struct net_device *netdev ) {
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- struct rtl8139_nic *rtl = netdev->priv;
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+static void nat_close ( struct net_device *netdev ) {
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+ struct natsemi_nic *nat = netdev->priv;
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378
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343
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/* Reset the hardware to disable everything in one go */
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- rtl_reset ( rtl );
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+ nat_reset ( nat );
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381
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/* Free RX ring */
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- free ( rtl->rx.ring );
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- rtl->rx.ring = NULL;
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+ for (i=0;i<NUM_RX_DESC;i++)
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+ {
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+
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+ free_iob( nat->iobuf[i] );
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+ }
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}
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/**
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@@ -358,24 +397,29 @@ static void rtl_close ( struct net_device *netdev ) {
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397
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static int natsemi_transmit ( struct net_device *netdev, struct io_buffer *iobuf ) {
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398
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struct natsemi_nic *nat = netdev->priv;
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399
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361
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- /* Check for space in TX ring */
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- if ( nat->tx.iobuf[nat->tx.next] != NULL ) {
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+ /* check for space in TX ring */
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+
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+ if (nat->tx[nat->tx_cur].cmdsts !=0)
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+ {
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printf ( "TX overflow\n" );
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405
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return -ENOBUFS;
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406
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}
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366
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407
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+
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/* Pad and align packet */
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410
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iob_pad ( iobuf, ETH_ZLEN );
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411
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370
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/* Add to TX ring */
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- DBG ( "TX id %d at %lx+%x\n", rtl->tx.next,
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+ DBG ( "TX id %d at %lx+%x\n", nat->tx_cur,
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virt_to_bus ( iobuf->data ), iob_len ( iobuf ) );
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373
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- rtl->tx.iobuf[rtl->tx.next] = iobuf;
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- outl ( virt_to_bus ( iobuf->data ),
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375
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- rtl->ioaddr + TxAddr0 + 4 * rtl->tx.next );
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376
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- outl ( ( ( ( TX_FIFO_THRESH & 0x7e0 ) << 11 ) | iob_len ( iobuf ) ),
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377
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- rtl->ioaddr + TxStatus0 + 4 * rtl->tx.next );
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378
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- rtl->tx.next = ( rtl->tx.next + 1 ) % TX_RING_SIZE;
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415
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+
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416
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+ nat->tx[nat->tx_cur].bufptr = virt_to_bus(iobuf->data);
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417
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+ nat->tx[nat->tx_cur].cmdsts= (uint32_t) iob_len(iobuf)|OWN;
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418
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+
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419
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+ nat->tx_cur=(nat->tx_cur+1) % TX_RING_SIZE;
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420
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+
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421
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+ /*start the transmitter */
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422
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+ outl(TxOn, nat->ioaddr + ChipCmd);
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379
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423
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380
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424
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return 0;
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381
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425
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}
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@@ -386,98 +430,77 @@ static int natsemi_transmit ( struct net_device *netdev, struct io_buffer *iobuf
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386
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430
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* @v netdev Network device
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387
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431
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* @v rx_quota Maximum number of packets to receive
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388
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432
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*/
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389
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-static void rtl_poll ( struct net_device *netdev, unsigned int rx_quota ) {
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390
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- struct rtl8139_nic *rtl = netdev->priv;
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433
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+static void nat_poll ( struct net_device *netdev, unsigned int rx_quota ) {
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434
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+ struct natsemi_nic *nat = netdev->priv;
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391
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435
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unsigned int status;
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392
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- unsigned int tsad;
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393
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436
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unsigned int rx_status;
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394
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437
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unsigned int rx_len;
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395
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438
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struct io_buffer *rx_iob;
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396
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- int wrapped_len;
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397
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439
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int i;
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398
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440
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|
399
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- /* Acknowledge interrupts */
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400
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- status = inw ( rtl->ioaddr + IntrStatus );
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401
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- if ( ! status )
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402
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- return;
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403
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- outw ( status, rtl->ioaddr + IntrStatus );
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404
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-
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405
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- /* Handle TX completions */
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406
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- tsad = inw ( rtl->ioaddr + TxSummary );
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407
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- for ( i = 0 ; i < TX_RING_SIZE ; i++ ) {
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408
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- if ( ( rtl->tx.iobuf[i] != NULL ) && ( tsad & ( 1 << i ) ) ) {
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409
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- DBG ( "TX id %d complete\n", i );
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410
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- netdev_tx_complete ( netdev, rtl->tx.iobuf[i] );
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411
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- rtl->tx.iobuf[i] = NULL;
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441
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+
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442
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+ /* check the status of packets given to card for transmission */
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443
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+ for ( i = 0 ; i < TX_RING_SIZE ; i++ )
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444
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+ {
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445
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+ status=bus_to_virt(nat->tx[nat->tx_dirty].cmdsts);
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446
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+ /* check if current packet has been transmitted or not */
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447
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+ if(status & own)
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448
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+ break;
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449
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+ /* Check if any errors in transmission */
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450
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+ if (! (status & DescPktOK))
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451
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+ {
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452
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+ printf("Error in sending Packet with data: %s\n and status:%X\n",
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453
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+ bus_to_virt(nat->tx[nat->tx_dirty].bufptr),
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454
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+ status);
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412
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455
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}
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456
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+ else
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457
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+ {
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458
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+ DBG("Success in transmitting Packet with data: %s",
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459
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+ bus_to_virt(nat->tx[nat->tx_dirty].bufptr));
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460
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+ }
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461
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+ /* setting cmdsts zero, indicating that it can be reused */
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462
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+ nat->tx[nat->tx_dirty].cmdsts=0;
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463
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+ nat->tx_dirty=(nat->tx_dirty +1) % TX_RING_SIZE;
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413
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464
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}
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414
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-
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465
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+
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466
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+
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467
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+ rx_status=bus_to_virt(nat->rx[nat->rx_cur].cmdsts);
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415
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468
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/* Handle received packets */
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416
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- while ( rx_quota && ! ( inw ( rtl->ioaddr + ChipCmd ) & RxBufEmpty ) ){
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417
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- rx_status = * ( ( uint16_t * )
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418
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- ( rtl->rx.ring + rtl->rx.offset ) );
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419
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- rx_len = * ( ( uint16_t * )
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420
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- ( rtl->rx.ring + rtl->rx.offset + 2 ) );
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421
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- if ( rx_status & RxOK ) {
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422
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- DBG ( "RX packet at offset %x+%x\n", rtl->rx.offset,
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423
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- rx_len );
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424
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-
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425
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- rx_iob = alloc_iob ( rx_len );
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426
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- if ( ! rx_iob ) {
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427
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- /* Leave packet for next call to poll() */
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428
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- break;
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429
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- }
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430
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-
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431
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- wrapped_len = ( ( rtl->rx.offset + 4 + rx_len )
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432
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- - RX_BUF_LEN );
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433
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- if ( wrapped_len < 0 )
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434
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- wrapped_len = 0;
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435
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-
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436
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- memcpy ( iob_put ( rx_iob, rx_len - wrapped_len ),
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437
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- rtl->rx.ring + rtl->rx.offset + 4,
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438
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- rx_len - wrapped_len );
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439
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- memcpy ( iob_put ( rx_iob, wrapped_len ),
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440
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- rtl->rx.ring, wrapped_len );
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441
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-
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442
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- netdev_rx ( netdev, rx_iob );
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469
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+ while (rx_quota && (rx_status & OWN))
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470
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+ {
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471
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+ rx_len= (rx_status & DSIZE) - CRC_SIZE;
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|
472
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+
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|
473
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+ /*check for the corrupt packet */
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|
474
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+ if((rx_status & (DescMore|DescPktOK|RxTooLong)) != DescPktOK)
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|
475
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+ {
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476
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+ printf("natsemi_poll: Corrupted packet received,
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477
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+ buffer status = %X\n",rx_status);
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478
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+ }
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479
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+ else
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|
480
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+ {
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481
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+ rx_iob = alloc_iob(rx_len);
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482
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+ if(!rx_iob)
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483
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+ /* leave packet for next call to poll*/
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484
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+ return;
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485
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+ memcpy(iob_put(rx_iob,rx_len),
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486
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+ nat->rx[nat->rx_cur].bufptr,rxlen);
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|
487
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+ /* add to the receive queue. */
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488
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+ netdev_rx(netdev,rx_iob);
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443
|
489
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rx_quota--;
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444
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- } else {
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445
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- DBG ( "RX bad packet (status %#04x len %d)\n",
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446
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- rx_status, rx_len );
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447
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490
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}
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448
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- rtl->rx.offset = ( ( ( rtl->rx.offset + 4 + rx_len + 3 ) & ~3 )
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449
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- % RX_BUF_LEN );
|
450
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- outw ( rtl->rx.offset - 16, rtl->ioaddr + RxBufPtr );
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|
491
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+ nat->rx[nat->rx_cur].cmdsts = RX_BUF_SIZE;
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492
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+ nat->rx_cur=(nat->rx_cur+1) % NUM_RX_DESC;
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451
|
493
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}
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452
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-}
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453
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494
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454
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-#if 0
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455
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-static void rtl_irq(struct nic *nic, irq_action_t action)
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456
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-{
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457
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- unsigned int mask;
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458
|
|
- /* Bit of a guess as to which interrupts we should allow */
|
459
|
|
- unsigned int interested = ROK | RER | RXOVW | FOVW | SERR;
|
460
|
|
-
|
461
|
|
- switch ( action ) {
|
462
|
|
- case DISABLE :
|
463
|
|
- case ENABLE :
|
464
|
|
- mask = inw(rtl->ioaddr + IntrMask);
|
465
|
|
- mask = mask & ~interested;
|
466
|
|
- if ( action == ENABLE ) mask = mask | interested;
|
467
|
|
- outw(mask, rtl->ioaddr + IntrMask);
|
468
|
|
- break;
|
469
|
|
- case FORCE :
|
470
|
|
- /* Apparently writing a 1 to this read-only bit of a
|
471
|
|
- * read-only and otherwise unrelated register will
|
472
|
|
- * force an interrupt. If you ever want to see how
|
473
|
|
- * not to write a datasheet, read the one for the
|
474
|
|
- * RTL8139...
|
475
|
|
- */
|
476
|
|
- outb(EROK, rtl->ioaddr + RxEarlyStatus);
|
477
|
|
- break;
|
478
|
|
- }
|
479
|
|
-}
|
480
|
|
-#endif
|
|
495
|
+
|
|
496
|
+ /* re-enable the potentially idle receive state machine */
|
|
497
|
+ outl(RxOn, ioaddr + ChipCmd);
|
|
498
|
+}
|
|
499
|
+
|
|
500
|
+
|
|
501
|
+
|
|
502
|
+
|
|
503
|
+
|
481
|
504
|
|
482
|
505
|
/**
|
483
|
506
|
* Probe PCI device
|
|
@@ -492,6 +515,7 @@ static int nat_probe ( struct pci_device *pci,
|
492
|
515
|
struct natsemi_nic *nat = NULL;
|
493
|
516
|
int registered_netdev = 0;
|
494
|
517
|
int rc;
|
|
518
|
+ uint32_t advertising;
|
495
|
519
|
|
496
|
520
|
/* Fix up PCI device */
|
497
|
521
|
adjust_pci_device ( pci );
|
|
@@ -517,6 +541,26 @@ static int nat_probe ( struct pci_device *pci,
|
517
|
541
|
|
518
|
542
|
*/
|
519
|
543
|
|
|
544
|
+
|
|
545
|
+ /* mdio routine of etherboot-5.4.0 natsemi driver has been removed and
|
|
546
|
+ * statement to read from MII transceiver control section is used directly
|
|
547
|
+ */
|
|
548
|
+
|
|
549
|
+ advertising = inl(nat->ioaddr + 0x80 + (4<<2)) & 0xffff;
|
|
550
|
+ {
|
|
551
|
+ uint32_t chip_config = inl(ioaddr + ChipConfig);
|
|
552
|
+ DBG("%s: Transceiver default autoneg. %s 10 %s %s duplex.\n",
|
|
553
|
+ pci->driver_name,
|
|
554
|
+ chip_config & 0x2000 ? "enabled, advertise" : "disabled, force",
|
|
555
|
+ chip_config & 0x4000 ? "0" : "",
|
|
556
|
+ chip_config & 0x8000 ? "full" : "half");
|
|
557
|
+ }
|
|
558
|
+ DBG("%s: Transceiver status %hX advertising %hX\n",pci->driver_name, (int)inl(nat->ioaddr + 0x84), advertising);
|
|
559
|
+
|
|
560
|
+
|
|
561
|
+
|
|
562
|
+
|
|
563
|
+
|
520
|
564
|
/* Point to NIC specific routines */
|
521
|
565
|
netdev->open = nat_open;
|
522
|
566
|
netdev->close = nat_close;
|
|
@@ -542,7 +586,7 @@ static int nat_probe ( struct pci_device *pci,
|
542
|
586
|
err:
|
543
|
587
|
/* Disable NIC */
|
544
|
588
|
if ( nat )
|
545
|
|
- nat_reset ( rtl );
|
|
589
|
+ nat_reset ( nat );
|
546
|
590
|
if ( registered_netdev )
|
547
|
591
|
unregister_netdev ( netdev );
|
548
|
592
|
/* Free net device */
|
|
@@ -555,37 +599,26 @@ static int nat_probe ( struct pci_device *pci,
|
555
|
599
|
*
|
556
|
600
|
* @v pci PCI device
|
557
|
601
|
*/
|
558
|
|
-static void rtl_remove ( struct pci_device *pci ) {
|
|
602
|
+static void nat_remove ( struct pci_device *pci ) {
|
559
|
603
|
struct net_device *netdev = pci_get_drvdata ( pci );
|
560
|
|
- struct rtl8139_nic *rtl = netdev->priv;
|
561
|
|
-
|
|
604
|
+ struct natsemi_nic *nat = netdev->priv;
|
|
605
|
+/* TODO
|
562
|
606
|
if ( rtl->nvo.nvs )
|
563
|
607
|
nvo_unregister ( &rtl->nvo );
|
|
608
|
+ */
|
564
|
609
|
unregister_netdev ( netdev );
|
565
|
|
- rtl_reset ( rtl );
|
|
610
|
+ nat_reset ( nat );
|
566
|
611
|
free_netdev ( netdev );
|
567
|
612
|
}
|
568
|
613
|
|
569
|
|
-static struct pci_device_id rtl8139_nics[] = {
|
570
|
|
-PCI_ROM(0x10ec, 0x8129, "rtl8129", "Realtek 8129"),
|
571
|
|
-PCI_ROM(0x10ec, 0x8139, "rtl8139", "Realtek 8139"),
|
572
|
|
-PCI_ROM(0x10ec, 0x8138, "rtl8139b", "Realtek 8139B"),
|
573
|
|
-PCI_ROM(0x1186, 0x1300, "dfe538", "DFE530TX+/DFE538TX"),
|
574
|
|
-PCI_ROM(0x1113, 0x1211, "smc1211-1", "SMC EZ10/100"),
|
575
|
|
-PCI_ROM(0x1112, 0x1211, "smc1211", "SMC EZ10/100"),
|
576
|
|
-PCI_ROM(0x1500, 0x1360, "delta8139", "Delta Electronics 8139"),
|
577
|
|
-PCI_ROM(0x4033, 0x1360, "addtron8139", "Addtron Technology 8139"),
|
578
|
|
-PCI_ROM(0x1186, 0x1340, "dfe690txd", "D-Link DFE690TXD"),
|
579
|
|
-PCI_ROM(0x13d1, 0xab06, "fe2000vx", "AboCom FE2000VX"),
|
580
|
|
-PCI_ROM(0x1259, 0xa117, "allied8139", "Allied Telesyn 8139"),
|
581
|
|
-PCI_ROM(0x14ea, 0xab06, "fnw3603tx", "Planex FNW-3603-TX"),
|
582
|
|
-PCI_ROM(0x14ea, 0xab07, "fnw3800tx", "Planex FNW-3800-TX"),
|
583
|
|
-PCI_ROM(0xffff, 0x8139, "clone-rtl8139", "Cloned 8139"),
|
|
614
|
+static struct pci_device_id natsemi_nics[] = {
|
|
615
|
+ PCI_ROM(0x100b, 0x0020, "dp83815", "DP83815"),
|
|
616
|
+
|
584
|
617
|
};
|
585
|
618
|
|
586
|
|
-struct pci_driver rtl8139_driver __pci_driver = {
|
587
|
|
- .ids = rtl8139_nics,
|
588
|
|
- .id_count = ( sizeof ( rtl8139_nics ) / sizeof ( rtl8139_nics[0] ) ),
|
589
|
|
- .probe = rtl_probe,
|
590
|
|
- .remove = rtl_remove,
|
|
619
|
+struct pci_driver natsemi_driver __pci_driver = {
|
|
620
|
+ .ids = natsemi_nics,
|
|
621
|
+ .id_count = ( sizeof ( natsemi_nics ) / sizeof ( natsemi_nics[0] ) ),
|
|
622
|
+ .probe = nat_probe,
|
|
623
|
+ .remove = nat_remove,
|
591
|
624
|
};
|