BIT_10
#define GLB_GPIO_RAND_ENA BIT_10 /* Random Enable */
#define BMU_CLR_IRQ_CHK BIT_10 /* Clear IRQ Check */
#define WOL_CTL_DIS_PME_ON_LINK_CHG BIT_10
#define PHY_M_AN_PC BIT_10 /* MAC Pause implemented */
#define PHY_M_1000C_MPD BIT_10 /* Multi-Port Device */
#define PHY_M_PC_FL_GOOD BIT_10 /* Force Link Good */
#define PHY_M_PS_LINK_UP BIT_10 /* Link Up */
#define PHY_M_IS_LST_CHANGE BIT_10 /* Link Status Changed */
#define PHY_M_IRQ_POLARITY BIT_10 /* IRQ polarity */
#define PHY_M_FIB_FORCE_LNK BIT_10 /* Force Link Good */
#define GM_GPSR_TX_ACTIVE BIT_10 /* Tx in Progress */
#define GM_SMOD_LIMIT_4 BIT_10 /* 4 consecutive Tx trials */
#define GMR_FS_MC BIT_10 /* Multicast Packet */
#define GMF_RP_TST_ON BIT_10 /* Read Pointer Test On */
#define GMC_BYP_MACSECTX_OFF BIT_10 /* Bypass MAC SEC TX Off */
#define GPC_PHYADDR_2 BIT_10 /* Bit 2 of Phy Addr */
#define PCI_DISC_CLS BIT_10 /* Disc: cacheLsz bound */
#define PCI_PATCH_DIR_2 BIT_10
#define PCI_GAT_PCIE_RST_ASSERTED BIT_10 /* PCIe Reset Asserted */
#define PEX_DC_EN_AUX_POW BIT_10 /* Enable AUX Power */
#define PEX_LS_TRAIN_ERROR BIT_10 /* Training Error */
#define Y2_CLK_RUN_DIS BIT_10 /* CLK_RUN Disable (YUKON-2 only) */
#define Y2_IS_CHK_RX2 BIT_10 /* Descriptor error Rx 2 */
#define Y2_IS_PAR_RX2 BIT_10 /* Parity Error Rx Queue 2 */
if (PhyRegValue & BIT_10) {
PhyRegValue &= ~BIT_10;
PhyRegValue &= ~BIT_10;
PhyRegValue &= ~BIT_10;
PhyRegValue &= ~BIT_10;
PhyRegValue &= ~BIT_10;
SetEthPhyOcpBit(sc, 0xC402, BIT_10);
ClearEthPhyOcpBit(sc, 0xC402, BIT_10);
BIT_11 | BIT_10,
BIT_11 | BIT_10 | BIT_9 | BIT_8,
BIT_10 | BIT_9 | BIT_8);
Data &= ~BIT_10;
Data &= ~BIT_10;
Data &= ~BIT_10;
Data &= ~BIT_10;
Data &= ~BIT_10;
PhyRegValue |= (BIT_10);
PhyRegValue |= (BIT_10);
PhyRegValue |= (BIT_10);
PhyRegValue |= (BIT_10);
BIT_15|BIT_14|BIT_13|BIT_12|BIT_11|BIT_10|BIT_8,
BIT_11|BIT_10|BIT_9|BIT_8);
BIT_15|BIT_14|BIT_13|BIT_11|BIT_10|BIT_9|BIT_8,
BIT_13|BIT_12|BIT_11|BIT_10|BIT_9|BIT_8,
BIT_12|BIT_11|BIT_10|BIT_9|BIT_8,
BIT_13|BIT_12|BIT_11|BIT_10|BIT_9|BIT_8,
BIT_12|BIT_11|BIT_10|BIT_9|BIT_8,
BIT_13|BIT_12|BIT_11|BIT_10|BIT_9|BIT_8,
BIT_12|BIT_11|BIT_10|BIT_9|BIT_8,
SetEthPhyBit(sc, 0x14, BIT_10);
SetEthPhyOcpBit(sc, 0xAD18, BIT_10);
BIT_11|BIT_10|BIT_9,
ClearEthPhyOcpBit(sc, 0xA5C0, BIT_10);
BIT_15 | BIT_14 | BIT_13 | BIT_12 | BIT_11 | BIT_10 | BIT_9 | BIT_8,
ioffset_p2 = ((TmpUshort & (BIT_12|BIT_11|BIT_10|BIT_9))>>9);
Data32 |= (BIT_8 | BIT_9 | BIT_10 | BIT_11 | BIT_12);
(BIT_13|BIT_12|BIT_11|BIT_10|BIT_8|BIT_7|BIT_6|BIT_5|BIT_4),
Data32 |= BIT_11 | BIT_10;
Data32 |= (BIT_8 | BIT_9 | BIT_10 | BIT_11 | BIT_12);
(BIT_13|BIT_12|BIT_11|BIT_10|BIT_8|BIT_7|BIT_6|BIT_5|BIT_4),
Data32 |= BIT_11 | BIT_10;
(BIT_13|BIT_12|BIT_11|BIT_10|BIT_8|BIT_7|BIT_6|BIT_5|BIT_4),
Data32 |= (BIT_8 | BIT_9 | BIT_10 | BIT_11 | BIT_12);
Data32 |= (BIT_7 | BIT_8 | BIT_9 | BIT_10 | BIT_11 | BIT_12);
(BIT_13|BIT_12|BIT_10|BIT_9|BIT_8|BIT_7|BIT_6|BIT_4),
(BIT_13 | BIT_12 | BIT_11 | BIT_10 | BIT_8 | BIT_7 | BIT_6 | BIT_5 | BIT_4),
(BIT_13 | BIT_12 | BIT_10 | BIT_9 | BIT_8 | BIT_7 | BIT_6 | BIT_4),
(BIT_13 | BIT_12 | BIT_10 | BIT_9 | BIT_8 | BIT_7 | BIT_6 | BIT_4),
data16 &= ~(BIT_11 | BIT_10 | BIT_9 | BIT_8 | BIT_7 | BIT_6 | BIT_5 | BIT_4 | BIT_3 | BIT_2 | BIT_1 | BIT_0);
Data32 |= BIT_7 | BIT_8 | BIT_9 | BIT_10 | BIT_11 | BIT_12;
ClearPCIePhyBit(sc, 0x0C, (BIT_13 | BIT_12 | BIT_11 | BIT_10 | BIT_9 | BIT_8 | BIT_7 | BIT_6 | BIT_5 | BIT_4));
BIT_13 | BIT_12 | BIT_11 | BIT_10 | BIT_8 | BIT_7 | BIT_6 | BIT_5,
data16 &= ~(BIT_11 | BIT_10 | BIT_9 | BIT_8 | BIT_7 | BIT_6 | BIT_5 | BIT_4 | BIT_3 | BIT_2 | BIT_1 | BIT_0);
Data32 |= BIT_7 | BIT_8 | BIT_9 | BIT_10 | BIT_11 | BIT_12;
SetPCIePhyBit(sc, 0x1B, (BIT_11 | BIT_10 | BIT_9));
SetPCIePhyBit(sc, 0x5B, (BIT_11 | BIT_10 | BIT_9));
data16 &= ~( BIT_10 | BIT_9 | BIT_8);
data16 &= ~(BIT_11 | BIT_10);
data16 &= ~(BIT_14 | BIT_11 | BIT_10 | BIT_9 | BIT_8 | BIT_3 | BIT_2 | BIT_1 | BIT_0);
data16 |= (BIT_14 | BIT_10 | BIT_1 | BIT_0);
data16 |= (BIT_8|BIT_9|BIT_10|BIT_11|BIT_12);
data16 &= ~(BIT_11 | BIT_10 | BIT_9 | BIT_8 | BIT_7 | BIT_6 | BIT_5 | BIT_4 | BIT_3 | BIT_2 | BIT_1 | BIT_0);
if (data & BIT_10) {
if (data & BIT_10) {