mirror of
https://github.com/AsahiLinux/u-boot
synced 2024-11-25 22:20:45 +00:00
a89c33db96
Many of the help messages were not really helpful; for example, many commands that take no arguments would not print a correct synopsis line, but "No additional help available." which is not exactly wrong, but not helpful either. Commit ``Make "usage" messages more helpful.'' changed this partially. But it also became clear that lots of "Usage" and "Help" messages (fields "usage" and "help" in struct cmd_tbl_s respective) were actually redundant. This patch cleans this up - for example: Before: => help dtt dtt - Digital Thermometer and Thermostat Usage: dtt - Read temperature from digital thermometer and thermostat. After: => help dtt dtt - Read temperature from Digital Thermometer and Thermostat Usage: dtt Signed-off-by: Wolfgang Denk <wd@denx.de>
348 lines
6.7 KiB
C
348 lines
6.7 KiB
C
/*
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* Copyright (C) 2008 Yoshihiro Shimoda <shimoda.yoshihiro@renesas.com>
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*
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* This program is free software; you can redistribute it and/or
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* modify it under the terms of the GNU General Public License as
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* published by the Free Software Foundation; either version 2 of
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* the License, or (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software
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* Foundation, Inc., 59 Temple Place, Suite 330, Boston,
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* MA 02111-1307 USA
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*/
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#include <common.h>
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#include "rtl8169.h"
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static unsigned char *PCI_MEMR;
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static void mac_delay(unsigned int cnt)
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{
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udelay(cnt);
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}
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static void mac_pci_setup(void)
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{
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unsigned long pci_data;
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PCI_PAR = 0x00000010;
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PCI_PDR = 0x00001000;
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PCI_PAR = 0x00000004;
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pci_data = PCI_PDR;
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PCI_PDR = pci_data | 0x00000007;
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PCI_PAR = 0x00000010;
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PCI_MEMR = (unsigned char *)((PCI_PDR | 0xFE240050) & 0xFFFFFFF0);
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}
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static void EECS(int level)
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{
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unsigned char data = *PCI_MEMR;
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if (level)
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*PCI_MEMR = data | 0x08;
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else
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*PCI_MEMR = data & 0xf7;
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}
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static void EECLK(int level)
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{
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unsigned char data = *PCI_MEMR;
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if (level)
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*PCI_MEMR = data | 0x04;
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else
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*PCI_MEMR = data & 0xfb;
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}
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static void EEDI(int level)
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{
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unsigned char data = *PCI_MEMR;
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if (level)
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*PCI_MEMR = data | 0x02;
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else
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*PCI_MEMR = data & 0xfd;
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}
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static inline void sh7785lcr_bitset(unsigned short bit)
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{
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if (bit)
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EEDI(HIGH);
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else
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EEDI(LOW);
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EECLK(LOW);
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mac_delay(TIME1);
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EECLK(HIGH);
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mac_delay(TIME1);
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EEDI(LOW);
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}
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static inline unsigned char sh7785lcr_bitget(void)
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{
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unsigned char bit;
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EECLK(LOW);
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mac_delay(TIME1);
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bit = *PCI_MEMR & 0x01;
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EECLK(HIGH);
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mac_delay(TIME1);
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return bit;
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}
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static inline void sh7785lcr_setcmd(unsigned char command)
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{
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sh7785lcr_bitset(BIT_DUMMY);
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switch (command) {
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case MAC_EEP_READ:
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sh7785lcr_bitset(1);
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sh7785lcr_bitset(1);
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sh7785lcr_bitset(0);
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break;
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case MAC_EEP_WRITE:
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sh7785lcr_bitset(1);
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sh7785lcr_bitset(0);
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sh7785lcr_bitset(1);
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break;
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case MAC_EEP_ERACE:
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sh7785lcr_bitset(1);
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sh7785lcr_bitset(1);
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sh7785lcr_bitset(1);
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break;
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case MAC_EEP_EWEN:
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sh7785lcr_bitset(1);
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sh7785lcr_bitset(0);
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sh7785lcr_bitset(0);
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break;
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case MAC_EEP_EWDS:
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sh7785lcr_bitset(1);
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sh7785lcr_bitset(0);
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sh7785lcr_bitset(0);
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break;
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default:
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break;
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}
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}
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static inline unsigned short sh7785lcr_getdt(void)
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{
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unsigned short data = 0;
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int i;
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sh7785lcr_bitget(); /* DUMMY */
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for (i = 0 ; i < 16 ; i++) {
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data <<= 1;
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data |= sh7785lcr_bitget();
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}
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return data;
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}
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static inline void sh7785lcr_setadd(unsigned short address)
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{
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sh7785lcr_bitset(address & 0x0020); /* A5 */
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sh7785lcr_bitset(address & 0x0010); /* A4 */
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sh7785lcr_bitset(address & 0x0008); /* A3 */
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sh7785lcr_bitset(address & 0x0004); /* A2 */
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sh7785lcr_bitset(address & 0x0002); /* A1 */
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sh7785lcr_bitset(address & 0x0001); /* A0 */
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}
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static inline void sh7785lcr_setdata(unsigned short data)
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{
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sh7785lcr_bitset(data & 0x8000);
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sh7785lcr_bitset(data & 0x4000);
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sh7785lcr_bitset(data & 0x2000);
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sh7785lcr_bitset(data & 0x1000);
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sh7785lcr_bitset(data & 0x0800);
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sh7785lcr_bitset(data & 0x0400);
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sh7785lcr_bitset(data & 0x0200);
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sh7785lcr_bitset(data & 0x0100);
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sh7785lcr_bitset(data & 0x0080);
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sh7785lcr_bitset(data & 0x0040);
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sh7785lcr_bitset(data & 0x0020);
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sh7785lcr_bitset(data & 0x0010);
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sh7785lcr_bitset(data & 0x0008);
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sh7785lcr_bitset(data & 0x0004);
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sh7785lcr_bitset(data & 0x0002);
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sh7785lcr_bitset(data & 0x0001);
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}
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static void sh7785lcr_datawrite(const unsigned short *data, unsigned short address,
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unsigned int count)
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{
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unsigned int i;
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for (i = 0; i < count; i++) {
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EECS(HIGH);
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EEDI(LOW);
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mac_delay(TIME1);
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sh7785lcr_setcmd(MAC_EEP_WRITE);
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sh7785lcr_setadd(address++);
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sh7785lcr_setdata(*(data + i));
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EECLK(LOW);
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EEDI(LOW);
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EECS(LOW);
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mac_delay(TIME2);
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}
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}
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static void sh7785lcr_macerase(void)
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{
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unsigned int i;
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unsigned short pci_address = 7;
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for (i = 0; i < 3; i++) {
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EECS(HIGH);
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EEDI(LOW);
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mac_delay(TIME1);
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sh7785lcr_setcmd(MAC_EEP_ERACE);
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sh7785lcr_setadd(pci_address++);
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mac_delay(TIME1);
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EECLK(LOW);
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EEDI(LOW);
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EECS(LOW);
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}
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mac_delay(TIME2);
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printf("\n\nErace End\n");
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for (i = 0; i < 10; i++)
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mac_delay(TIME2);
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}
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static void sh7785lcr_macwrite(unsigned short *data)
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{
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sh7785lcr_macerase();
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sh7785lcr_datawrite(EEPROM_W_Data_8169_A, 0x0000, 7);
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sh7785lcr_datawrite(data, PCI_EEP_ADDRESS, PCI_MAC_ADDRESS_SIZE);
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sh7785lcr_datawrite(EEPROM_W_Data_8169_B, 0x000a, 54);
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}
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void sh7785lcr_macdtrd(unsigned char *buf, unsigned short address, unsigned int count)
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{
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unsigned int i;
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unsigned short wk;
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for (i = 0 ; i < count; i++) {
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EECS(HIGH);
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EEDI(LOW);
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mac_delay(TIME1);
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sh7785lcr_setcmd(MAC_EEP_READ);
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sh7785lcr_setadd(address++);
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wk = sh7785lcr_getdt();
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*buf++ = (unsigned char)(wk & 0xff);
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*buf++ = (unsigned char)((wk >> 8) & 0xff);
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EECLK(LOW);
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EEDI(LOW);
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EECS(LOW);
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}
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}
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static void sh7785lcr_macadrd(unsigned char *buf)
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{
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*PCI_MEMR = PCI_PROG;
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sh7785lcr_macdtrd(buf, PCI_EEP_ADDRESS, PCI_MAC_ADDRESS_SIZE);
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}
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static void sh7785lcr_eepewen(void)
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{
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*PCI_MEMR = PCI_PROG;
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mac_delay(TIME1);
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EECS(LOW);
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EECLK(LOW);
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EEDI(LOW);
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EECS(HIGH);
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mac_delay(TIME1);
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sh7785lcr_setcmd(MAC_EEP_EWEN);
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sh7785lcr_bitset(1);
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sh7785lcr_bitset(1);
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sh7785lcr_bitset(BIT_DUMMY);
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sh7785lcr_bitset(BIT_DUMMY);
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sh7785lcr_bitset(BIT_DUMMY);
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sh7785lcr_bitset(BIT_DUMMY);
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EECLK(LOW);
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EEDI(LOW);
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EECS(LOW);
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mac_delay(TIME1);
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}
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void mac_write(unsigned short *data)
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{
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mac_pci_setup();
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sh7785lcr_eepewen();
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sh7785lcr_macwrite(data);
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}
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void mac_read(void)
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{
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unsigned char data[6];
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mac_pci_setup();
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sh7785lcr_macadrd(data);
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printf("Mac = %02x:%02x:%02x:%02x:%02x:%02x\n",
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data[0], data[1], data[2], data[3], data[4], data[5]);
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}
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int do_set_mac(cmd_tbl_t *cmdtp, int flag, int argc, char *argv[])
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{
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int i;
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unsigned char mac[6];
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char *s, *e;
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if (argc != 2) {
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cmd_usage(cmdtp);
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return 1;
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}
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s = argv[1];
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for (i = 0; i < 6; i++) {
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mac[i] = s ? simple_strtoul(s, &e, 16) : 0;
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if (s)
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s = (*e) ? e + 1 : e;
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}
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mac_write((unsigned short *)mac);
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return 0;
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}
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U_BOOT_CMD(
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setmac, 2, 1, do_set_mac,
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"write MAC address for RTL8110SCL",
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"\n"
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"setmac <mac address> - write MAC address for RTL8110SCL"
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);
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int do_print_mac(cmd_tbl_t *cmdtp, int flag, int argc, char *argv[])
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{
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if (argc != 1) {
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cmd_usage(cmdtp);
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return 1;
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}
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mac_read();
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return 0;
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}
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U_BOOT_CMD(
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printmac, 1, 1, do_print_mac,
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"print MAC address for RTL8110",
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"\n"
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" - print MAC address for RTL8110"
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);
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