mirror of
https://github.com/edk2-porting/linux-next.git
synced 2024-12-22 12:14:01 +08:00
tulip: Convert to generic boolean
Signed-off-by: Richard Knutsson <ricknu-0@student.ltu.se> Signed-off-by: Jeff Garzik <jeff@garzik.org>
This commit is contained in:
parent
480fe1a31c
commit
eb034a7998
@ -597,7 +597,7 @@ static char *args;
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#endif
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struct parameters {
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int fdx;
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bool fdx;
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int autosense;
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};
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@ -809,10 +809,10 @@ struct de4x5_private {
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s32 irq_en; /* Summary interrupt bits */
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int media; /* Media (eg TP), mode (eg 100B)*/
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int c_media; /* Remember the last media conn */
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int fdx; /* media full duplex flag */
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bool fdx; /* media full duplex flag */
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int linkOK; /* Link is OK */
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int autosense; /* Allow/disallow autosensing */
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int tx_enable; /* Enable descriptor polling */
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bool tx_enable; /* Enable descriptor polling */
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int setup_f; /* Setup frame filtering type */
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int local_state; /* State within a 'media' state */
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struct mii_phy phy[DE4X5_MAX_PHY]; /* List of attached PHY devices */
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@ -838,8 +838,8 @@ struct de4x5_private {
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struct de4x5_srom srom; /* A copy of the SROM */
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int cfrv; /* Card CFRV copy */
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int rx_ovf; /* Check for 'RX overflow' tag */
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int useSROM; /* For non-DEC card use SROM */
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int useMII; /* Infoblock using the MII */
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bool useSROM; /* For non-DEC card use SROM */
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bool useMII; /* Infoblock using the MII */
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int asBitValid; /* Autosense bits in GEP? */
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int asPolarity; /* 0 => asserted high */
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int asBit; /* Autosense bit number in GEP */
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@ -928,7 +928,7 @@ static int dc21040_state(struct net_device *dev, int csr13, int csr14, int c
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static int test_media(struct net_device *dev, s32 irqs, s32 irq_mask, s32 csr13, s32 csr14, s32 csr15, s32 msec);
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static int test_for_100Mb(struct net_device *dev, int msec);
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static int wait_for_link(struct net_device *dev);
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static int test_mii_reg(struct net_device *dev, int reg, int mask, int pol, long msec);
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static int test_mii_reg(struct net_device *dev, int reg, int mask, bool pol, long msec);
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static int is_spd_100(struct net_device *dev);
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static int is_100_up(struct net_device *dev);
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static int is_10_up(struct net_device *dev);
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@ -1109,7 +1109,7 @@ de4x5_hw_init(struct net_device *dev, u_long iobase, struct device *gendev)
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/*
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** Now find out what kind of DC21040/DC21041/DC21140 board we have.
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*/
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lp->useSROM = FALSE;
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lp->useSROM = false;
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if (lp->bus == PCI) {
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PCI_signature(name, lp);
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} else {
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@ -1137,7 +1137,7 @@ de4x5_hw_init(struct net_device *dev, u_long iobase, struct device *gendev)
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lp->cache.gepc = GEP_INIT;
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lp->asBit = GEP_SLNK;
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lp->asPolarity = GEP_SLNK;
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lp->asBitValid = TRUE;
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lp->asBitValid = ~0;
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lp->timeout = -1;
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lp->gendev = gendev;
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spin_lock_init(&lp->lock);
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@ -1463,7 +1463,7 @@ de4x5_queue_pkt(struct sk_buff *skb, struct net_device *dev)
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u_long flags = 0;
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netif_stop_queue(dev);
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if (lp->tx_enable == NO) { /* Cannot send for now */
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if (!lp->tx_enable) { /* Cannot send for now */
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return -1;
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}
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@ -2424,7 +2424,7 @@ dc21040_autoconf(struct net_device *dev)
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switch (lp->media) {
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case INIT:
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DISABLE_IRQs;
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lp->tx_enable = NO;
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lp->tx_enable = false;
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lp->timeout = -1;
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de4x5_save_skbs(dev);
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if ((lp->autosense == AUTO) || (lp->autosense == TP)) {
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@ -2477,7 +2477,7 @@ dc21040_autoconf(struct net_device *dev)
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lp->c_media = lp->media;
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}
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lp->media = INIT;
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lp->tx_enable = NO;
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lp->tx_enable = false;
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break;
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}
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@ -2578,7 +2578,7 @@ dc21041_autoconf(struct net_device *dev)
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switch (lp->media) {
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case INIT:
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DISABLE_IRQs;
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lp->tx_enable = NO;
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lp->tx_enable = false;
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lp->timeout = -1;
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de4x5_save_skbs(dev); /* Save non transmitted skb's */
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if ((lp->autosense == AUTO) || (lp->autosense == TP_NW)) {
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@ -2757,7 +2757,7 @@ dc21041_autoconf(struct net_device *dev)
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lp->c_media = lp->media;
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}
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lp->media = INIT;
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lp->tx_enable = NO;
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lp->tx_enable = false;
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break;
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}
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@ -2781,7 +2781,7 @@ dc21140m_autoconf(struct net_device *dev)
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case INIT:
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if (lp->timeout < 0) {
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DISABLE_IRQs;
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lp->tx_enable = FALSE;
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lp->tx_enable = false;
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lp->linkOK = 0;
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de4x5_save_skbs(dev); /* Save non transmitted skb's */
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}
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@ -2830,7 +2830,7 @@ dc21140m_autoconf(struct net_device *dev)
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if (lp->timeout < 0) {
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mii_wr(MII_CR_ASSE | MII_CR_RAN, MII_CR, lp->phy[lp->active].addr, DE4X5_MII);
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}
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cr = test_mii_reg(dev, MII_CR, MII_CR_RAN, FALSE, 500);
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cr = test_mii_reg(dev, MII_CR, MII_CR_RAN, false, 500);
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if (cr < 0) {
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next_tick = cr & ~TIMER_CB;
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} else {
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@ -2845,7 +2845,7 @@ dc21140m_autoconf(struct net_device *dev)
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break;
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case 1:
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if ((sr=test_mii_reg(dev, MII_SR, MII_SR_ASSC, TRUE, 2000)) < 0) {
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if ((sr=test_mii_reg(dev, MII_SR, MII_SR_ASSC, true, 2000)) < 0) {
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next_tick = sr & ~TIMER_CB;
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} else {
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lp->media = SPD_DET;
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@ -2857,10 +2857,10 @@ dc21140m_autoconf(struct net_device *dev)
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if (!(anlpa & MII_ANLPA_RF) &&
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(cap = anlpa & MII_ANLPA_TAF & ana)) {
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if (cap & MII_ANA_100M) {
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lp->fdx = ((ana & anlpa & MII_ANA_FDAM & MII_ANA_100M) ? TRUE : FALSE);
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lp->fdx = (ana & anlpa & MII_ANA_FDAM & MII_ANA_100M) != 0;
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lp->media = _100Mb;
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} else if (cap & MII_ANA_10M) {
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lp->fdx = ((ana & anlpa & MII_ANA_FDAM & MII_ANA_10M) ? TRUE : FALSE);
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lp->fdx = (ana & anlpa & MII_ANA_FDAM & MII_ANA_10M) != 0;
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lp->media = _10Mb;
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}
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@ -2932,7 +2932,7 @@ dc21140m_autoconf(struct net_device *dev)
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lp->c_media = lp->media;
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}
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lp->media = INIT;
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lp->tx_enable = FALSE;
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lp->tx_enable = false;
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break;
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}
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@ -2965,7 +2965,7 @@ dc2114x_autoconf(struct net_device *dev)
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case INIT:
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if (lp->timeout < 0) {
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DISABLE_IRQs;
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lp->tx_enable = FALSE;
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lp->tx_enable = false;
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lp->linkOK = 0;
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lp->timeout = -1;
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de4x5_save_skbs(dev); /* Save non transmitted skb's */
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@ -3013,7 +3013,7 @@ dc2114x_autoconf(struct net_device *dev)
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if (lp->timeout < 0) {
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mii_wr(MII_CR_ASSE | MII_CR_RAN, MII_CR, lp->phy[lp->active].addr, DE4X5_MII);
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}
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cr = test_mii_reg(dev, MII_CR, MII_CR_RAN, FALSE, 500);
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cr = test_mii_reg(dev, MII_CR, MII_CR_RAN, false, 500);
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if (cr < 0) {
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next_tick = cr & ~TIMER_CB;
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} else {
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@ -3028,7 +3028,8 @@ dc2114x_autoconf(struct net_device *dev)
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break;
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case 1:
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if ((sr=test_mii_reg(dev, MII_SR, MII_SR_ASSC, TRUE, 2000)) < 0) {
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sr = test_mii_reg(dev, MII_SR, MII_SR_ASSC, true, 2000);
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if (sr < 0) {
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next_tick = sr & ~TIMER_CB;
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} else {
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lp->media = SPD_DET;
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@ -3040,10 +3041,10 @@ dc2114x_autoconf(struct net_device *dev)
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if (!(anlpa & MII_ANLPA_RF) &&
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(cap = anlpa & MII_ANLPA_TAF & ana)) {
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if (cap & MII_ANA_100M) {
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lp->fdx = ((ana & anlpa & MII_ANA_FDAM & MII_ANA_100M) ? TRUE : FALSE);
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lp->fdx = (ana & anlpa & MII_ANA_FDAM & MII_ANA_100M) != 0;
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lp->media = _100Mb;
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} else if (cap & MII_ANA_10M) {
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lp->fdx = ((ana & anlpa & MII_ANA_FDAM & MII_ANA_10M) ? TRUE : FALSE);
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lp->fdx = (ana & anlpa & MII_ANA_FDAM & MII_ANA_10M) != 0;
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lp->media = _10Mb;
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}
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}
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@ -3222,14 +3223,14 @@ srom_map_media(struct net_device *dev)
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{
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struct de4x5_private *lp = netdev_priv(dev);
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lp->fdx = 0;
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lp->fdx = false;
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if (lp->infoblock_media == lp->media)
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return 0;
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switch(lp->infoblock_media) {
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case SROM_10BASETF:
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if (!lp->params.fdx) return -1;
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lp->fdx = TRUE;
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lp->fdx = true;
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case SROM_10BASET:
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if (lp->params.fdx && !lp->fdx) return -1;
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if ((lp->chipset == DC21140) || ((lp->chipset & ~0x00ff) == DC2114x)) {
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@ -3249,7 +3250,7 @@ srom_map_media(struct net_device *dev)
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case SROM_100BASETF:
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if (!lp->params.fdx) return -1;
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lp->fdx = TRUE;
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lp->fdx = true;
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case SROM_100BASET:
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if (lp->params.fdx && !lp->fdx) return -1;
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lp->media = _100Mb;
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@ -3261,7 +3262,7 @@ srom_map_media(struct net_device *dev)
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case SROM_100BASEFF:
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if (!lp->params.fdx) return -1;
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lp->fdx = TRUE;
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lp->fdx = true;
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case SROM_100BASEF:
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if (lp->params.fdx && !lp->fdx) return -1;
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lp->media = _100Mb;
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@ -3297,7 +3298,7 @@ de4x5_init_connection(struct net_device *dev)
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spin_lock_irqsave(&lp->lock, flags);
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de4x5_rst_desc_ring(dev);
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de4x5_setup_intr(dev);
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lp->tx_enable = YES;
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lp->tx_enable = true;
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spin_unlock_irqrestore(&lp->lock, flags);
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outl(POLL_DEMAND, DE4X5_TPD);
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@ -3336,7 +3337,7 @@ de4x5_reset_phy(struct net_device *dev)
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}
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}
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if (lp->useMII) {
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next_tick = test_mii_reg(dev, MII_CR, MII_CR_RST, FALSE, 500);
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next_tick = test_mii_reg(dev, MII_CR, MII_CR_RST, false, 500);
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}
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} else if (lp->chipset == DC21140) {
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PHY_HARD_RESET;
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@ -3466,7 +3467,7 @@ wait_for_link(struct net_device *dev)
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**
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*/
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static int
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test_mii_reg(struct net_device *dev, int reg, int mask, int pol, long msec)
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test_mii_reg(struct net_device *dev, int reg, int mask, bool pol, long msec)
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{
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struct de4x5_private *lp = netdev_priv(dev);
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int test;
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@ -3476,9 +3477,8 @@ test_mii_reg(struct net_device *dev, int reg, int mask, int pol, long msec)
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lp->timeout = msec/100;
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}
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if (pol) pol = ~0;
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reg = mii_rd((u_char)reg, lp->phy[lp->active].addr, DE4X5_MII) & mask;
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test = (reg ^ pol) & mask;
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test = (reg ^ (pol ? ~0 : 0)) & mask;
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if (test && --lp->timeout) {
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reg = 100 | TIMER_CB;
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@ -3992,10 +3992,10 @@ PCI_signature(char *name, struct de4x5_private *lp)
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)))))));
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}
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if (lp->chipset != DC21041) {
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lp->useSROM = TRUE; /* card is not recognisably DEC */
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lp->useSROM = true; /* card is not recognisably DEC */
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}
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} else if ((lp->chipset & ~0x00ff) == DC2114x) {
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lp->useSROM = TRUE;
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lp->useSROM = true;
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}
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return status;
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@ -4216,7 +4216,7 @@ srom_repair(struct net_device *dev, int card)
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memset((char *)&lp->srom, 0, sizeof(struct de4x5_srom));
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memcpy(lp->srom.ieee_addr, (char *)dev->dev_addr, ETH_ALEN);
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memcpy(lp->srom.info, (char *)&srom_repair_info[SMC-1], 100);
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lp->useSROM = TRUE;
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lp->useSROM = true;
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break;
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}
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@ -4392,7 +4392,7 @@ srom_infoleaf_info(struct net_device *dev)
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if (lp->chipset == infoleaf_array[i].chipset) break;
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}
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if (i == INFOLEAF_SIZE) {
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lp->useSROM = FALSE;
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lp->useSROM = false;
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printk("%s: Cannot find correct chipset for SROM decoding!\n",
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dev->name);
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return -ENXIO;
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@ -4409,7 +4409,7 @@ srom_infoleaf_info(struct net_device *dev)
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if (lp->device == *p) break;
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}
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if (i == 0) {
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lp->useSROM = FALSE;
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lp->useSROM = false;
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printk("%s: Cannot find correct PCI device [%d] for SROM decoding!\n",
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dev->name, lp->device);
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return -ENXIO;
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@ -4542,7 +4542,7 @@ dc21140_infoleaf(struct net_device *dev)
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}
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lp->media = INIT;
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lp->tcount = 0;
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lp->tx_enable = FALSE;
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lp->tx_enable = false;
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}
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return next_tick & ~TIMER_CB;
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@ -4577,7 +4577,7 @@ dc21142_infoleaf(struct net_device *dev)
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}
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lp->media = INIT;
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lp->tcount = 0;
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lp->tx_enable = FALSE;
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lp->tx_enable = false;
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}
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return next_tick & ~TIMER_CB;
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@ -4611,7 +4611,7 @@ dc21143_infoleaf(struct net_device *dev)
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}
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lp->media = INIT;
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lp->tcount = 0;
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lp->tx_enable = FALSE;
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lp->tx_enable = false;
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}
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return next_tick & ~TIMER_CB;
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@ -4650,7 +4650,7 @@ compact_infoblock(struct net_device *dev, u_char count, u_char *p)
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lp->asBit = 1 << ((csr6 >> 1) & 0x07);
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lp->asPolarity = ((csr6 & 0x80) ? -1 : 0) & lp->asBit;
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lp->infoblock_csr6 = OMR_DEF | ((csr6 & 0x71) << 18);
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lp->useMII = FALSE;
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lp->useMII = false;
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de4x5_switch_mac_port(dev);
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}
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@ -4691,7 +4691,7 @@ type0_infoblock(struct net_device *dev, u_char count, u_char *p)
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lp->asBit = 1 << ((csr6 >> 1) & 0x07);
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lp->asPolarity = ((csr6 & 0x80) ? -1 : 0) & lp->asBit;
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lp->infoblock_csr6 = OMR_DEF | ((csr6 & 0x71) << 18);
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lp->useMII = FALSE;
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lp->useMII = false;
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de4x5_switch_mac_port(dev);
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}
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@ -4731,7 +4731,7 @@ type1_infoblock(struct net_device *dev, u_char count, u_char *p)
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lp->ibn = 1;
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lp->active = *p;
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lp->infoblock_csr6 = OMR_MII_100;
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lp->useMII = TRUE;
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lp->useMII = true;
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lp->infoblock_media = ANS;
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de4x5_switch_mac_port(dev);
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@ -4773,7 +4773,7 @@ type2_infoblock(struct net_device *dev, u_char count, u_char *p)
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lp->cache.gepc = ((s32)(TWIDDLE(p)) << 16); p += 2;
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lp->cache.gep = ((s32)(TWIDDLE(p)) << 16);
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lp->infoblock_csr6 = OMR_SIA;
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lp->useMII = FALSE;
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lp->useMII = false;
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de4x5_switch_mac_port(dev);
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}
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@ -4814,7 +4814,7 @@ type3_infoblock(struct net_device *dev, u_char count, u_char *p)
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lp->active = *p;
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if (MOTO_SROM_BUG) lp->active = 0;
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lp->infoblock_csr6 = OMR_MII_100;
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lp->useMII = TRUE;
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lp->useMII = true;
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lp->infoblock_media = ANS;
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de4x5_switch_mac_port(dev);
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@ -4856,7 +4856,7 @@ type4_infoblock(struct net_device *dev, u_char count, u_char *p)
|
||||
lp->asBit = 1 << ((csr6 >> 1) & 0x07);
|
||||
lp->asPolarity = ((csr6 & 0x80) ? -1 : 0) & lp->asBit;
|
||||
lp->infoblock_csr6 = OMR_DEF | ((csr6 & 0x71) << 18);
|
||||
lp->useMII = FALSE;
|
||||
lp->useMII = false;
|
||||
|
||||
de4x5_switch_mac_port(dev);
|
||||
}
|
||||
@ -5077,7 +5077,7 @@ mii_get_phy(struct net_device *dev)
|
||||
int id;
|
||||
|
||||
lp->active = 0;
|
||||
lp->useMII = TRUE;
|
||||
lp->useMII = true;
|
||||
|
||||
/* Search the MII address space for possible PHY devices */
|
||||
for (n=0, lp->mii_cnt=0, i=1; !((i==1) && (n==1)); i=(i+1)%DE4X5_MAX_MII) {
|
||||
@ -5127,7 +5127,7 @@ mii_get_phy(struct net_device *dev)
|
||||
de4x5_dbg_mii(dev, k);
|
||||
}
|
||||
}
|
||||
if (!lp->mii_cnt) lp->useMII = FALSE;
|
||||
if (!lp->mii_cnt) lp->useMII = false;
|
||||
|
||||
return lp->mii_cnt;
|
||||
}
|
||||
|
@ -892,15 +892,6 @@
|
||||
#define ALL 0 /* Clear out all the setup frame */
|
||||
#define PHYS_ADDR_ONLY 1 /* Update the physical address only */
|
||||
|
||||
/*
|
||||
** Booleans
|
||||
*/
|
||||
#define NO 0
|
||||
#define FALSE 0
|
||||
|
||||
#define YES ~0
|
||||
#define TRUE ~0
|
||||
|
||||
/*
|
||||
** Adapter state
|
||||
*/
|
||||
|
Loading…
Reference in New Issue
Block a user