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@ -24,6 +24,8 @@ |
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* MA 02111-1307 USA |
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*/ |
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/* #define DEBUG */ |
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#include <common.h> |
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#include <command.h> |
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#include <net.h> |
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@ -33,8 +35,6 @@ |
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#include <ambapp.h> |
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#include <asm/leon.h> |
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/* #define DEBUG */ |
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#include "greth.h" |
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/* Default to 3s timeout on autonegotiation */ |
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@ -42,10 +42,17 @@ |
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#define GRETH_PHY_TIMEOUT_MS 3000 |
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#endif |
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/* Default to PHY adrress 0 not not specified */ |
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#ifdef CONFIG_SYS_GRLIB_GRETH_PHYADDR |
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#define GRETH_PHY_ADR_DEFAULT CONFIG_SYS_GRLIB_GRETH_PHYADDR |
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#else |
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#define GRETH_PHY_ADR_DEFAULT 0 |
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#endif |
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/* ByPass Cache when reading regs */ |
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#define GRETH_REGLOAD(addr) SPARC_NOCACHE_READ(addr) |
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/* Write-through cache ==> no bypassing needed on writes */ |
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#define GRETH_REGSAVE(addr,data) (*(unsigned int *)(addr) = (data)) |
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#define GRETH_REGSAVE(addr,data) (*(volatile unsigned int *)(addr) = (data)) |
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#define GRETH_REGORIN(addr,data) GRETH_REGSAVE(addr,GRETH_REGLOAD(addr)|data) |
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#define GRETH_REGANDIN(addr,data) GRETH_REGSAVE(addr,GRETH_REGLOAD(addr)&data) |
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@ -102,12 +109,12 @@ typedef struct { |
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} greth_priv; |
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/* Read MII register 'addr' from core 'regs' */ |
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static int read_mii(int addr, volatile greth_regs * regs) |
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static int read_mii(int phyaddr, int regaddr, volatile greth_regs * regs) |
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{ |
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while (GRETH_REGLOAD(®s->mdio) & GRETH_MII_BUSY) { |
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} |
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GRETH_REGSAVE(®s->mdio, (0 << 11) | ((addr & 0x1F) << 6) | 2); |
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GRETH_REGSAVE(®s->mdio, ((phyaddr & 0x1F) << 11) | ((regaddr & 0x1F) << 6) | 2); |
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while (GRETH_REGLOAD(®s->mdio) & GRETH_MII_BUSY) { |
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} |
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@ -119,14 +126,14 @@ static int read_mii(int addr, volatile greth_regs * regs) |
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} |
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} |
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static void write_mii(int addr, int data, volatile greth_regs * regs) |
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static void write_mii(int phyaddr, int regaddr, int data, volatile greth_regs * regs) |
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{ |
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while (GRETH_REGLOAD(®s->mdio) & GRETH_MII_BUSY) { |
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} |
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GRETH_REGSAVE(®s->mdio, |
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((data & 0xFFFF) << 16) | (0 << 11) | ((addr & 0x1F) << 6) |
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| 1); |
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((data & 0xFFFF) << 16) | ((phyaddr & 0x1F) << 11) | |
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((regaddr & 0x1F) << 6) | 1); |
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while (GRETH_REGLOAD(®s->mdio) & GRETH_MII_BUSY) { |
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} |
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@ -142,11 +149,18 @@ int greth_init(struct eth_device *dev, bd_t * bis) |
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greth_priv *greth = dev->priv; |
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greth_regs *regs = greth->regs; |
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#ifdef DEBUG |
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printf("greth_init\n"); |
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#endif |
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GRETH_REGSAVE(®s->control, 0); |
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debug("greth_init\n"); |
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/* Reset core */ |
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GRETH_REGSAVE(®s->control, (GRETH_RESET | (greth->gb << 8) | |
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(greth->sp << 7) | (greth->fd << 4))); |
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/* Wait for Reset to complete */ |
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while ( GRETH_REGLOAD(®s->control) & GRETH_RESET) ; |
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GRETH_REGSAVE(®s->control, |
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((greth->gb << 8) | (greth->sp << 7) | (greth->fd << 4))); |
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if (!greth->rxbd_base) { |
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@ -154,7 +168,7 @@ int greth_init(struct eth_device *dev, bd_t * bis) |
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greth->rxbd_base = (greth_bd *) |
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memalign(0x1000, GRETH_RXBD_CNT * sizeof(greth_bd)); |
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greth->txbd_base = (greth_bd *) |
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memalign(0x1000, GRETH_RXBD_CNT * sizeof(greth_bd)); |
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memalign(0x1000, GRETH_TXBD_CNT * sizeof(greth_bd)); |
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/* allocate buffers to all descriptors */ |
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greth->rxbuf_base = |
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@ -186,7 +200,7 @@ int greth_init(struct eth_device *dev, bd_t * bis) |
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for (i = 0; i < GRETH_TXBD_CNT; i++) { |
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greth->txbd_base[i].addr = 0; |
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/* enable desciptor & set wrap bit if last descriptor */ |
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if (i >= (GRETH_RXBD_CNT - 1)) { |
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if (i >= (GRETH_TXBD_CNT - 1)) { |
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greth->txbd_base[i].stat = GRETH_BD_WR; |
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} else { |
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greth->txbd_base[i].stat = 0; |
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@ -201,9 +215,7 @@ int greth_init(struct eth_device *dev, bd_t * bis) |
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/* Enable Transmitter, GRETH will now scan descriptors for packets
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* to transmitt */ |
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#ifdef DEBUG |
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printf("greth_init: enabling receiver\n"); |
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#endif |
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debug("greth_init: enabling receiver\n"); |
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GRETH_REGORIN(®s->control, GRETH_RXEN); |
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return 0; |
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@ -219,6 +231,26 @@ int greth_init_phy(greth_priv * dev, bd_t * bis) |
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greth_regs *regs = dev->regs; |
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int tmp, tmp1, tmp2, i; |
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unsigned int start, timeout; |
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int phyaddr = GRETH_PHY_ADR_DEFAULT; |
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#ifndef CONFIG_SYS_GRLIB_GRETH_PHYADDR |
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/* If BSP doesn't provide a hardcoded PHY address the driver will
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* try to autodetect PHY address by stopping the search on the first |
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* PHY address which has REG0 implemented. |
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*/ |
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for (i=0; i<32; i++) { |
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tmp = read_mii(i, 0, regs); |
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if ( (tmp != 0) && (tmp != 0xffff) ) { |
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phyaddr = i; |
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break; |
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} |
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} |
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#endif |
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/* Save PHY Address */ |
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dev->phyaddr = phyaddr; |
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debug("GRETH PHY ADDRESS: %d\n", phyaddr); |
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/* X msecs to ticks */ |
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timeout = usec2ticks(GRETH_PHY_TIMEOUT_MS * 1000); |
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@ -230,17 +262,21 @@ int greth_init_phy(greth_priv * dev, bd_t * bis) |
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/* get phy control register default values */ |
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while ((tmp = read_mii(0, regs)) & 0x8000) { |
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if (get_timer(start) > timeout) |
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while ((tmp = read_mii(phyaddr, 0, regs)) & 0x8000) { |
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if (get_timer(start) > timeout) { |
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debug("greth_init_phy: PHY read 1 failed\n"); |
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return 1; /* Fail */ |
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} |
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} |
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/* reset PHY and wait for completion */ |
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write_mii(0, 0x8000 | tmp, regs); |
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write_mii(phyaddr, 0, 0x8000 | tmp, regs); |
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while (((tmp = read_mii(0, regs))) & 0x8000) { |
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if (get_timer(start) > timeout) |
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while (((tmp = read_mii(phyaddr, 0, regs))) & 0x8000) { |
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if (get_timer(start) > timeout) { |
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debug("greth_init_phy: PHY read 2 failed\n"); |
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return 1; /* Fail */ |
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} |
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} |
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/* Check if PHY is autoneg capable and then determine operating
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@ -251,16 +287,16 @@ int greth_init_phy(greth_priv * dev, bd_t * bis) |
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dev->sp = 0; |
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dev->auto_neg = 0; |
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if (!((tmp >> 12) & 1)) { |
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write_mii(0, 0, regs); |
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write_mii(phyaddr, 0, 0, regs); |
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} else { |
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/* wait for auto negotiation to complete and then check operating mode */ |
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dev->auto_neg = 1; |
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i = 0; |
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while (!(((tmp = read_mii(1, regs)) >> 5) & 1)) { |
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while (!(((tmp = read_mii(phyaddr, 1, regs)) >> 5) & 1)) { |
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if (get_timer(start) > timeout) { |
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printf("Auto negotiation timed out. " |
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"Selecting default config\n"); |
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tmp = read_mii(0, regs); |
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tmp = read_mii(phyaddr, 0, regs); |
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dev->gb = ((tmp >> 6) & 1) |
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&& !((tmp >> 13) & 1); |
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dev->sp = !((tmp >> 6) & 1) |
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@ -270,8 +306,8 @@ int greth_init_phy(greth_priv * dev, bd_t * bis) |
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} |
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} |
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if ((tmp >> 8) & 1) { |
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tmp1 = read_mii(9, regs); |
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tmp2 = read_mii(10, regs); |
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tmp1 = read_mii(phyaddr, 9, regs); |
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tmp2 = read_mii(phyaddr, 10, regs); |
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if ((tmp1 & GRETH_MII_EXTADV_1000FD) && |
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(tmp2 & GRETH_MII_EXTPRT_1000FD)) { |
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dev->gb = 1; |
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@ -284,8 +320,8 @@ int greth_init_phy(greth_priv * dev, bd_t * bis) |
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} |
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} |
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if ((dev->gb == 0) || ((dev->gb == 1) && (dev->gbit_mac == 0))) { |
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tmp1 = read_mii(4, regs); |
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tmp2 = read_mii(5, regs); |
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tmp1 = read_mii(phyaddr, 4, regs); |
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tmp2 = read_mii(phyaddr, 5, regs); |
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if ((tmp1 & GRETH_MII_100TXFD) && |
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(tmp2 & GRETH_MII_100TXFD)) { |
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dev->sp = 1; |
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@ -302,28 +338,24 @@ int greth_init_phy(greth_priv * dev, bd_t * bis) |
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if ((dev->gb == 1) && (dev->gbit_mac == 0)) { |
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dev->gb = 0; |
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dev->fd = 0; |
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write_mii(0, dev->sp << 13, regs); |
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write_mii(phyaddr, 0, dev->sp << 13, regs); |
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} |
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} |
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} |
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auto_neg_done: |
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#ifdef DEBUG |
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printf("%s GRETH Ethermac at [0x%x] irq %d. Running \
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debug("%s GRETH Ethermac at [0x%x] irq %d. Running \
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%d Mbps %s duplex\n", dev->gbit_mac ? "10/100/1000" : "10/100", (unsigned int)(regs), (unsigned int)(dev->irq), dev->gb ? 1000 : (dev->sp ? 100 : 10), dev->fd ? "full" : "half"); |
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#endif |
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/* Read out PHY info if extended registers are available */ |
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if (tmp & 1) { |
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tmp1 = read_mii(2, regs); |
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tmp2 = read_mii(3, regs); |
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tmp1 = read_mii(phyaddr, 2, regs); |
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tmp2 = read_mii(phyaddr, 3, regs); |
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tmp1 = (tmp1 << 6) | ((tmp2 >> 10) & 0x3F); |
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tmp = tmp2 & 0xF; |
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tmp2 = (tmp2 >> 4) & 0x3F; |
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#ifdef DEBUG |
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printf("PHY: Vendor %x Device %x Revision %d\n", tmp1, |
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debug("PHY: Vendor %x Device %x Revision %d\n", tmp1, |
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tmp2, tmp); |
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#endif |
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} else { |
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printf("PHY info not available\n"); |
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} |
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@ -340,9 +372,9 @@ void greth_halt(struct eth_device *dev) |
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greth_priv *greth; |
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greth_regs *regs; |
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int i; |
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#ifdef DEBUG |
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printf("greth_halt\n"); |
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#endif |
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debug("greth_halt\n"); |
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if (!dev || !dev->priv) |
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return; |
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@ -378,9 +410,9 @@ int greth_send(struct eth_device *dev, volatile void *eth_data, int data_length) |
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greth_bd *txbd; |
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void *txbuf; |
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unsigned int status; |
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#ifdef DEBUG |
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printf("greth_send\n"); |
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#endif |
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debug("greth_send\n"); |
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/* send data, wait for data to be sent, then return */ |
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if (((unsigned int)eth_data & (GRETH_BUF_ALIGN - 1)) |
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&& !greth->gbit_mac) { |
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@ -389,9 +421,6 @@ int greth_send(struct eth_device *dev, volatile void *eth_data, int data_length) |
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*/ |
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if (!greth->txbuf) { |
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greth->txbuf = malloc(GRETH_RXBUF_SIZE); |
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#ifdef DEBUG |
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printf("GRETH: allocated aligned tx-buf\n"); |
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#endif |
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} |
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txbuf = greth->txbuf; |
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@ -457,9 +486,7 @@ int greth_recv(struct eth_device *dev) |
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unsigned char *d; |
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int enable = 0; |
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int i; |
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#ifdef DEBUG |
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/* printf("greth_recv\n"); */ |
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#endif |
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/* Receive One packet only, but clear as many error packets as there are
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* available. |
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*/ |
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@ -476,10 +503,9 @@ int greth_recv(struct eth_device *dev) |
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if (status & GRETH_BD_EN) { |
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goto done; |
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} |
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#ifdef DEBUG |
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printf("greth_recv: packet 0x%lx, 0x%lx, len: %d\n", |
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debug("greth_recv: packet 0x%lx, 0x%lx, len: %d\n", |
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(unsigned int)rxbd, status, status & GRETH_BD_LEN); |
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#endif |
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/* Check status for errors.
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*/ |
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@ -507,19 +533,18 @@ int greth_recv(struct eth_device *dev) |
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for (i = 0; i < GRETH_RXBD_CNT; i++) { |
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printf("[%d]: Stat=0x%lx, Addr=0x%lx\n", i, |
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GRETH_REGLOAD(&greth->rxbd_base[i].stat), |
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GRETH_REGLOAD(&greth->rxbd_base[i]. |
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addr)); |
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GRETH_REGLOAD(&greth->rxbd_base[i].addr)); |
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} |
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} else { |
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/* Process the incoming packet. */ |
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len = status & GRETH_BD_LEN; |
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d = (char *)rxbd->addr; |
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#ifdef DEBUG |
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printf |
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debug |
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("greth_recv: new packet, length: %d. data: %x %x %x %x %x %x %x %x\n", |
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len, d[0], d[1], d[2], d[3], d[4], d[5], d[6], |
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d[7]); |
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#endif |
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/* flush all data cache to make sure we're not reading old packet data */ |
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sparc_dcache_flush_all(); |
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@ -545,7 +570,7 @@ int greth_recv(struct eth_device *dev) |
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(unsigned int)greth->rxbd_max) ? greth-> |
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rxbd_base : (greth->rxbd_curr + 1); |
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}; |
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} |
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if (enable) { |
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GRETH_REGORIN(®s->control, GRETH_RXEN); |
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@ -567,10 +592,9 @@ void greth_set_hwaddr(greth_priv * greth, unsigned char *mac) |
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greth->regs->esa_msb = (mac[0] << 8) | mac[1]; |
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greth->regs->esa_lsb = |
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(mac[2] << 24) | (mac[3] << 16) | (mac[4] << 8) | mac[5]; |
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#ifdef DEBUG |
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printf("GRETH: New MAC address: %02x:%02x:%02x:%02x:%02x:%02x\n", |
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debug("GRETH: New MAC address: %02x:%02x:%02x:%02x:%02x:%02x\n", |
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mac[0], mac[1], mac[2], mac[3], mac[4], mac[5]); |
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#endif |
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} |
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int greth_initialize(bd_t * bis) |
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@ -581,9 +605,9 @@ int greth_initialize(bd_t * bis) |
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int i; |
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char *addr_str, *end; |
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unsigned char addr[6]; |
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#ifdef DEBUG |
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printf("Scanning for GRETH\n"); |
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#endif |
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debug("Scanning for GRETH\n"); |
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/* Find Device & IRQ via AMBA Plug&Play information */ |
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if (ambapp_apb_first(VENDOR_GAISLER, GAISLER_ETHMAC, &apbdev) != 1) { |
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return -1; /* GRETH not found */ |
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@ -596,9 +620,7 @@ int greth_initialize(bd_t * bis) |
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greth->regs = (greth_regs *) apbdev.address; |
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greth->irq = apbdev.irq; |
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#ifdef DEBUG |
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printf("Found GRETH at 0x%lx, irq %d\n", greth->regs, greth->irq); |
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#endif |
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debug("Found GRETH at 0x%lx, irq %d\n", greth->regs, greth->irq); |
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dev->priv = (void *)greth; |
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dev->iobase = (unsigned int)greth->regs; |
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dev->init = greth_init; |
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@ -622,14 +644,15 @@ int greth_initialize(bd_t * bis) |
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/* Make descriptor string */ |
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if (greth->gbit_mac) { |
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sprintf(dev->name, "GRETH 10/100/GB"); |
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sprintf(dev->name, "GRETH_10/100/GB"); |
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} else { |
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sprintf(dev->name, "GRETH 10/100"); |
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sprintf(dev->name, "GRETH_10/100"); |
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} |
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/* initiate PHY, select speed/duplex depending on connected PHY */ |
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|
if (greth_init_phy(greth, bis)) { |
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|
/* Failed to init PHY (timedout) */ |
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|
debug("GRETH[0x%08x]: Failed to init PHY\n", greth->regs); |
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|
return -1; |
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|
} |
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|
@ -658,5 +681,6 @@ int greth_initialize(bd_t * bis) |
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|
/* set and remember MAC address */ |
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|
greth_set_hwaddr(greth, addr); |
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|
debug("GRETH[0x%08x]: Initialized successfully\n", greth->regs); |
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|
return 0; |
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|
} |
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