提交 fdeb932b 编写于 作者: W Wolfgang Denk

Merge branch 'master' of git://www.denx.de/git/u-boot-blackfin

......@@ -703,6 +703,21 @@ Yoshihiro Shimoda <shimoda.yoshihiro@renesas.com>
MS7720SE SH7720
#########################################################################
# Blackfin Systems: #
# #
# Maintainer Name, Email Address #
# Board CPU #
#########################################################################
Mike Frysinger <vapier@gentoo.org>
Blackfin Team <u-boot-devel@blackfin.uclinux.org>
BF533-EZKIT BF533
BF533-STAMP BF533
BF537-STAMP BF537
BF561-EZKIT BF561
#########################################################################
# End of MAINTAINERS list #
#########################################################################
......@@ -24,9 +24,13 @@
PLATFORM_RELFLAGS += -ffixed-P5
PLATFORM_CPPFLAGS += -DCONFIG_BLACKFIN
ifneq (,$(CONFIG_BFIN_CPU))
PLATFORM_RELFLAGS += -mcpu=$(CONFIG_BFIN_CPU)
endif
SYM_PREFIX = _
LDR_FLAGS += --use-vmas
ifeq (,$(findstring s,$(MAKEFLAGS)))
ifneq (,$(findstring s,$(MAKEFLAGS)))
LDR_FLAGS += --quiet
endif
......@@ -34,13 +34,6 @@ DECLARE_GLOBAL_DATA_PTR;
int checkboard(void)
{
#if (BFIN_CPU == ADSP_BF531)
printf("CPU: ADSP BF531 Rev.: 0.%d\n", *pCHIPID >> 28);
#elif (BFIN_CPU == ADSP_BF532)
printf("CPU: ADSP BF532 Rev.: 0.%d\n", *pCHIPID >> 28);
#else
printf("CPU: ADSP BF533 Rev.: 0.%d\n", *pCHIPID >> 28);
#endif
printf("Board: ADI BF533 EZ-Kit Lite board\n");
printf(" Support: http://blackfin.uclinux.org/\n");
return 0;
......
......@@ -43,13 +43,6 @@ DECLARE_GLOBAL_DATA_PTR;
int checkboard(void)
{
#if (BFIN_CPU == ADSP_BF531)
printf("CPU: ADSP BF531 Rev.: 0.%d\n", *pCHIPID >> 28);
#elif (BFIN_CPU == ADSP_BF532)
printf("CPU: ADSP BF532 Rev.: 0.%d\n", *pCHIPID >> 28);
#else
printf("CPU: ADSP BF533 Rev.: 0.%d\n", *pCHIPID >> 28);
#endif
printf("Board: ADI BF533 Stamp board\n");
printf(" Support: http://blackfin.uclinux.org/\n");
return 0;
......
......@@ -29,7 +29,7 @@ include $(TOPDIR)/config.mk
LIB = $(obj)lib$(BOARD).a
COBJS := $(BOARD).o flash.o ether_bf537.o post-memory.o stm_m25p64.o cmd_bf537led.o nand.o
COBJS := $(BOARD).o ether_bf537.o post-memory.o stm_m25p64.o cmd_bf537led.o nand.o
SRCS := $(SOBJS:.o=.S) $(COBJS:.o=.c)
OBJS := $(addprefix $(obj),$(COBJS))
......
......@@ -31,7 +31,6 @@
#include <asm/blackfin.h>
#include <asm/io.h>
#include <net.h>
#include "ether_bf537.h"
#include <asm/mach-common/bits/bootrom.h>
/**
......@@ -54,60 +53,8 @@ DECLARE_GLOBAL_DATA_PTR;
#define POST_WORD_ADDR 0xFF903FFC
/*
* the bootldr command loads an address, checks to see if there
* is a Boot stream that the on-chip BOOTROM can understand,
* and loads it via the BOOTROM Callback. It is possible
* to also add booting from SPI, or TWI, but this function does
* not currently support that.
*/
int do_bootldr(cmd_tbl_t * cmdtp, int flag, int argc, char *argv[])
{
ulong addr, entry;
ulong *data;
/* Get the address */
if (argc < 2) {
addr = load_addr;
} else {
addr = simple_strtoul(argv[1], NULL, 16);
}
/* Check if it is a LDR file */
data = (ulong *) addr;
if (*data == 0xFF800060 || *data == 0xFF800040 || *data == 0xFF800020) {
/* We want to boot from FLASH or SDRAM */
entry = _BOOTROM_BOOT_DXE_FLASH;
printf("## Booting ldr image at 0x%08lx ...\n", addr);
if (icache_status())
icache_disable();
if (dcache_status())
dcache_disable();
__asm__("R7=%[a];\n" "P0=%[b];\n" "JUMP (P0);\n":
:[a] "d"(addr),[b] "a"(entry)
:"R7", "P0");
} else {
printf("## No ldr image at address 0x%08lx\n", addr);
}
return 0;
}
U_BOOT_CMD(bootldr, 2, 0, do_bootldr,
"bootldr - boot ldr image from memory\n",
"[addr]\n - boot ldr image stored in memory\n");
int checkboard(void)
{
#if (BFIN_CPU == ADSP_BF534)
printf("CPU: ADSP BF534 Rev.: 0.%d\n", *pCHIPID >> 28);
#elif (BFIN_CPU == ADSP_BF536)
printf("CPU: ADSP BF536 Rev.: 0.%d\n", *pCHIPID >> 28);
#else
printf("CPU: ADSP BF537 Rev.: 0.%d\n", *pCHIPID >> 28);
#endif
printf("Board: ADI BF537 stamp board\n");
printf(" Support: http://blackfin.uclinux.org/\n");
return 0;
......@@ -187,9 +134,6 @@ int misc_init_r(void)
pMACaddr[2], pMACaddr[3], pMACaddr[4], pMACaddr[5]);
setenv("ethaddr", nid);
}
if (getenv("ethaddr")) {
SetupMacAddr(SrcAddr);
}
#endif
#endif /* BFIN_BOOT_MODE == BF537_BYPASS_BOOT */
......
/*
* U-boot - flash-defines.h
*
* Copyright (c) 2005-2007 Analog Devices Inc.
*
* (C) Copyright 2000-2004
* Wolfgang Denk, DENX Software Engineering, wd@denx.de.
*
* See file CREDITS for list of people who contributed to this
* project.
*
* This program is free software; you can redistribute it and/or
* modify it under the terms of the GNU General Public License as
* published by the Free Software Foundation; either version 2 of
* the License, or (at your option) any later version.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*
* You should have received a copy of the GNU General Public License
* along with this program; if not, write to the Free Software
* Foundation, Inc., 51 Franklin St, Fifth Floor, Boston,
* MA 02110-1301 USA
*/
#ifndef __FLASHDEFINES_H__
#define __FLASHDEFINES_H__
#include <common.h>
#define V_ULONG(a) (*(volatile unsigned long *)( a ))
#define V_BYTE(a) (*(volatile unsigned char *)( a ))
#define TRUE 0x1
#define FALSE 0x0
#define BUFFER_SIZE 0x80000
#define NO_COMMAND 0
#define GET_CODES 1
#define RESET 2
#define WRITE 3
#define FILL 4
#define ERASE_ALL 5
#define ERASE_SECT 6
#define READ 7
#define GET_SECTNUM 8
#define FLASH_START_L 0x0000
#define FLASH_START_H 0x2000
#define FLASH_MAN_ST 2
#define RESET_VAL 0xF0
flash_info_t flash_info[CFG_MAX_FLASH_BANKS];
int get_codes(void);
int poll_toggle_bit(long lOffset);
void reset_flash(void);
int erase_flash(void);
int erase_block_flash(int);
void unlock_flash(long lOffset);
int write_data(long lStart, long lCount, uchar * pnData);
int read_flash(long nOffset, int *pnValue);
int write_flash(long nOffset, int nValue);
void get_sector_number(long lOffset, int *pnSector);
int GetSectorProtectionStatus(flash_info_t * info, int nSector);
int GetOffset(int nBlock);
int AFP_NumSectors = 71;
long AFP_SectorSize2 = 0x10000;
int AFP_SectorSize1 = 0x2000;
#define NUM_SECTORS 71
#define WRITESEQ1 0x0AAA
#define WRITESEQ2 0x0554
#define WRITESEQ3 0x0AAA
#define WRITESEQ4 0x0AAA
#define WRITESEQ5 0x0554
#define WRITESEQ6 0x0AAA
#define WRITEDATA1 0xaa
#define WRITEDATA2 0x55
#define WRITEDATA3 0x80
#define WRITEDATA4 0xaa
#define WRITEDATA5 0x55
#define WRITEDATA6 0x10
#define PriFlashABegin 0
#define SecFlashABegin 8
#define SecFlashBBegin 36
#define PriFlashAOff 0x0
#define PriFlashBOff 0x100000
#define SecFlashAOff 0x10000
#define SecFlashBOff 0x280000
#define INVALIDLOCNSTART 0x20270000
#define INVALIDLOCNEND 0x20280000
#define BlockEraseVal 0x30
#define UNLOCKDATA1 0xaa
#define UNLOCKDATA2 0x55
#define UNLOCKDATA3 0xa0
#define GETCODEDATA1 0xaa
#define GETCODEDATA2 0x55
#define GETCODEDATA3 0x90
#define SecFlashASec1Off 0x200000
#define SecFlashASec2Off 0x204000
#define SecFlashASec3Off 0x206000
#define SecFlashASec4Off 0x208000
#define SecFlashAEndOff 0x210000
#define SecFlashBSec1Off 0x280000
#define SecFlashBSec2Off 0x284000
#define SecFlashBSec3Off 0x286000
#define SecFlashBSec4Off 0x288000
#define SecFlashBEndOff 0x290000
#define SECT32 32
#define SECT33 33
#define SECT34 34
#define SECT35 35
#define SECT36 36
#define SECT37 37
#define SECT38 38
#define SECT39 39
#define FLASH_SUCCESS 0
#define FLASH_FAIL -1
#endif
/*
* U-boot - flash.c Flash driver for PSD4256GV
*
* Copyright (c) 2005-2007 Analog Devices Inc.
* This file is based on BF533EzFlash.c originally written by Analog Devices, Inc.
*
* (C) Copyright 2000-2004
* Wolfgang Denk, DENX Software Engineering, wd@denx.de.
*
* See file CREDITS for list of people who contributed to this
* project.
*
* This program is free software; you can redistribute it and/or
* modify it under the terms of the GNU General Public License as
* published by the Free Software Foundation; either version 2 of
* the License, or (at your option) any later version.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*
* You should have received a copy of the GNU General Public License
* along with this program; if not, write to the Free Software
* Foundation, Inc., 51 Franklin St, Fifth Floor, Boston,
* MA 02110-1301 USA
*/
#include <malloc.h>
#include <config.h>
#include <asm/io.h>
#include "flash-defines.h"
void flash_reset(void)
{
reset_flash();
}
unsigned long flash_get_size(ulong baseaddr, flash_info_t * info, int bank_flag)
{
int id = 0, i = 0;
static int FlagDev = 1;
id = get_codes();
if (FlagDev) {
FlagDev = 0;
}
info->flash_id = id;
switch (bank_flag) {
case 0:
for (i = PriFlashABegin; i < SecFlashABegin; i++)
info->start[i] = (baseaddr + (i * AFP_SectorSize1));
for (i = SecFlashABegin; i < NUM_SECTORS; i++)
info->start[i] =
(baseaddr + SecFlashAOff +
((i - SecFlashABegin) * AFP_SectorSize2));
info->size = 0x400000;
info->sector_count = NUM_SECTORS;
break;
case 1:
info->start[0] = baseaddr + SecFlashASec1Off;
info->start[1] = baseaddr + SecFlashASec2Off;
info->start[2] = baseaddr + SecFlashASec3Off;
info->start[3] = baseaddr + SecFlashASec4Off;
info->size = 0x10000;
info->sector_count = 4;
break;
case 2:
info->start[0] = baseaddr + SecFlashBSec1Off;
info->start[1] = baseaddr + SecFlashBSec2Off;
info->start[2] = baseaddr + SecFlashBSec3Off;
info->start[3] = baseaddr + SecFlashBSec4Off;
info->size = 0x10000;
info->sector_count = 4;
break;
}
return (info->size);
}
unsigned long flash_init(void)
{
unsigned long size_b;
int i;
size_b = 0;
for (i = 0; i < CFG_MAX_FLASH_BANKS; ++i) {
flash_info[i].flash_id = FLASH_UNKNOWN;
}
size_b = flash_get_size(CFG_FLASH_BASE, &flash_info[0], 0);
if (flash_info[0].flash_id == FLASH_UNKNOWN || size_b == 0) {
printf("## Unknown FLASH on Bank 0 - Size = 0x%08lx = %ld MB\n",
size_b, size_b >> 20);
}
/* flash_protect (int flag, ulong from, ulong to, flash_info_t *info) */
(void)flash_protect(FLAG_PROTECT_SET, CFG_FLASH_BASE,
(flash_info[0].start[2] - 1), &flash_info[0]);
#if (BFIN_BOOT_MODE == BF537_BYPASS_BOOT)
(void)flash_protect(FLAG_PROTECT_SET, 0x203F0000, 0x203FFFFF,
&flash_info[0]);
#endif
return (size_b);
}
void flash_print_info(flash_info_t * info)
{
int i;
if (info->flash_id == FLASH_UNKNOWN) {
printf("missing or unknown FLASH type\n");
return;
}
switch (info->flash_id) {
case (STM_ID_29W320EB & 0xFFFF):
case (STM_ID_29W320DB & 0xFFFF):
printf("ST Microelectronics ");
break;
default:
printf("Unknown Vendor: (0x%08X) ", info->flash_id);
break;
}
for (i = 0; i < info->sector_count; ++i) {
if ((i % 5) == 0)
printf("\n ");
printf(" %08lX%s",
info->start[i], info->protect[i] ? " (RO)" : " ");
}
printf("\n");
return;
}
int flash_erase(flash_info_t * info, int s_first, int s_last)
{
int cnt = 0, i;
int prot, sect;
prot = 0;
for (sect = s_first; sect <= s_last; ++sect) {
if (info->protect[sect])
prot++;
}
if (prot)
printf("- Warning: %d protected sectors will not be erased!\n",
prot);
else
printf("\n");
cnt = s_last - s_first + 1;
#if (BFIN_BOOT_MODE == BF537_BYPASS_BOOT)
printf("Erasing Flash locations, Please Wait\n");
for (i = s_first; i <= s_last; i++) {
if (info->protect[i] == 0) { /* not protected */
if (erase_block_flash(i) < 0) {
printf("Error Sector erasing \n");
return FLASH_FAIL;
}
}
}
#elif (BFIN_BOOT_MODE == BF537_SPI_MASTER_BOOT)
if (cnt == FLASH_TOT_SECT) {
printf("Erasing flash, Please Wait \n");
if (erase_flash() < 0) {
printf("Erasing flash failed \n");
return FLASH_FAIL;
}
} else {
printf("Erasing Flash locations, Please Wait\n");
for (i = s_first; i <= s_last; i++) {
if (info->protect[i] == 0) { /* not protected */
if (erase_block_flash(i) < 0) {
printf("Error Sector erasing \n");
return FLASH_FAIL;
}
}
}
}
#endif
printf("\n");
return FLASH_SUCCESS;
}
int write_buff(flash_info_t * info, uchar * src, ulong addr, ulong cnt)
{
int d;
if (addr % 2) {
read_flash(addr - 1 - CFG_FLASH_BASE, &d);
d = (int)((d & 0x00FF) | (*src++ << 8));
write_data(addr - 1, 2, (uchar *) & d);
write_data(addr + 1, cnt - 1, src);
} else
write_data(addr, cnt, src);
return FLASH_SUCCESS;
}
int write_data(long lStart, long lCount, uchar * pnData)
{
long i = 0;
unsigned long ulOffset = lStart - CFG_FLASH_BASE;
int d;
int nSector = 0;
int flag = 0;
if (lCount % 2) {
flag = 1;
lCount = lCount - 1;
}
for (i = 0; i < lCount - 1; i += 2, ulOffset += 2) {
get_sector_number(ulOffset, &nSector);
read_flash(ulOffset, &d);
if (d != 0xffff) {
printf
("Flash not erased at offset 0x%x Please erase to reprogram \n",
ulOffset);
return FLASH_FAIL;
}
unlock_flash(ulOffset);
d = (int)(pnData[i] | pnData[i + 1] << 8);
write_flash(ulOffset, d);
if (poll_toggle_bit(ulOffset) < 0) {
printf("Error programming the flash \n");
return FLASH_FAIL;
}
if ((i > 0) && (!(i % AFP_SectorSize2)))
printf(".");
}
if (flag) {
get_sector_number(ulOffset, &nSector);
read_flash(ulOffset, &d);
if (d != 0xffff) {
printf
("Flash not erased at offset 0x%x Please erase to reprogram \n",
ulOffset);
return FLASH_FAIL;
}
unlock_flash(ulOffset);
d = (int)(pnData[i] | (d & 0xFF00));
write_flash(ulOffset, d);
if (poll_toggle_bit(ulOffset) < 0) {
printf("Error programming the flash \n");
return FLASH_FAIL;
}
}
return FLASH_SUCCESS;
}
int write_flash(long nOffset, int nValue)
{
long addr;
addr = (CFG_FLASH_BASE + nOffset);
*(unsigned volatile short *)addr = nValue;
SSYNC();
#if (BFIN_BOOT_MODE == BF537_SPI_MASTER_BOOT)
if (icache_status())
udelay(CONFIG_CCLK_HZ / 1000000);
#endif
return FLASH_SUCCESS;
}
int read_flash(long nOffset, int *pnValue)
{
unsigned short *pFlashAddr =
(unsigned short *)(CFG_FLASH_BASE + nOffset);
*pnValue = *pFlashAddr;
return TRUE;
}
int poll_toggle_bit(long lOffset)
{
unsigned int u1, u2;
volatile unsigned long *FB =
(volatile unsigned long *)(CFG_FLASH_BASE + lOffset);
while (1) {
u1 = *(volatile unsigned short *)FB;
u2 = *(volatile unsigned short *)FB;
u1 ^= u2;
if (!(u1 & 0x0040))
break;
if (!(u2 & 0x0020))
continue;
else {
u1 = *(volatile unsigned short *)FB;
u2 = *(volatile unsigned short *)FB;
u1 ^= u2;
if (!(u1 & 0x0040))
break;
else {
reset_flash();
return FLASH_FAIL;
}
}
}
return FLASH_SUCCESS;
}
void reset_flash(void)
{
write_flash(WRITESEQ1, RESET_VAL);
/* Wait for 10 micro seconds */
udelay(10);
}
int erase_flash(void)
{
write_flash(WRITESEQ1, WRITEDATA1);
write_flash(WRITESEQ2, WRITEDATA2);
write_flash(WRITESEQ3, WRITEDATA3);
write_flash(WRITESEQ4, WRITEDATA4);
write_flash(WRITESEQ5, WRITEDATA5);
write_flash(WRITESEQ6, WRITEDATA6);
if (poll_toggle_bit(0x0000) < 0)
return FLASH_FAIL;
return FLASH_SUCCESS;
}
int erase_block_flash(int nBlock)
{
long ulSectorOff = 0x0;
if ((nBlock < 0) || (nBlock > AFP_NumSectors))
return FALSE;
/* figure out the offset of the block in flash */
if ((nBlock >= 0) && (nBlock < SecFlashABegin))
ulSectorOff = nBlock * AFP_SectorSize1;
else if ((nBlock >= SecFlashABegin) && (nBlock < NUM_SECTORS))
ulSectorOff =
SecFlashAOff + (nBlock - SecFlashABegin) * AFP_SectorSize2;
/* no such sector */
else
return FLASH_FAIL;
write_flash((WRITESEQ1 | ulSectorOff), WRITEDATA1);
write_flash((WRITESEQ2 | ulSectorOff), WRITEDATA2);
write_flash((WRITESEQ3 | ulSectorOff), WRITEDATA3);
write_flash((WRITESEQ4 | ulSectorOff), WRITEDATA4);
write_flash((WRITESEQ5 | ulSectorOff), WRITEDATA5);
write_flash(ulSectorOff, BlockEraseVal);
if (poll_toggle_bit(ulSectorOff) < 0)
return FLASH_FAIL;
printf(".");
return FLASH_SUCCESS;
}
void unlock_flash(long ulOffset)
{
unsigned long ulOffsetAddr = ulOffset;
ulOffsetAddr &= 0xFFFF0000;
write_flash((WRITESEQ1 | ulOffsetAddr), UNLOCKDATA1);
write_flash((WRITESEQ2 | ulOffsetAddr), UNLOCKDATA2);
write_flash((WRITESEQ3 | ulOffsetAddr), UNLOCKDATA3);
}
int get_codes()
{
int dev_id = 0;
write_flash(WRITESEQ1, GETCODEDATA1);
write_flash(WRITESEQ2, GETCODEDATA2);
write_flash(WRITESEQ3, GETCODEDATA3);
read_flash(0x0402, &dev_id);
dev_id &= 0x0000FFFF;
reset_flash();
return dev_id;
}
void get_sector_number(long ulOffset, int *pnSector)
{
int nSector = 0;
long lMainEnd = 0x400000;
long lBootEnd = 0x10000;
/* sector numbers for the FLASH A boot sectors */
if (ulOffset < lBootEnd) {
nSector = (int)ulOffset / AFP_SectorSize1;
}
/* sector numbers for the FLASH B boot sectors */
else if ((ulOffset >= lBootEnd) && (ulOffset < lMainEnd)) {
nSector = ((ulOffset / (AFP_SectorSize2)) + 7);
}
/* if it is a valid sector, set it */
if ((nSector >= 0) && (nSector < AFP_NumSectors))
*pnSector = nSector;
}
......@@ -37,9 +37,11 @@ COBJS-$(CONFIG_CMD_BDI) += cmd_bdinfo.o
COBJS-$(CONFIG_CMD_BEDBUG) += cmd_bedbug.o
COBJS-$(CONFIG_CMD_BMP) += cmd_bmp.o
COBJS-y += cmd_boot.o
COBJS-$(CONFIG_CMD_BOOTLDR) += cmd_bootldr.o
COBJS-y += cmd_bootm.o
COBJS-$(CONFIG_CMD_CACHE) += cmd_cache.o
COBJS-$(CONFIG_CMD_CONSOLE) += cmd_console.o
COBJS-$(CONFIG_CMD_CPLBINFO) += cmd_cplbinfo.o
COBJS-$(CONFIG_CMD_DATE) += cmd_date.o
ifdef CONFIG_4xx
COBJS-$(CONFIG_CMD_SETGETDCR) += cmd_dcr.o
......
/*
* U-boot - bootldr.c
*
* Copyright (c) 2005-2008 Analog Devices Inc.
*
* See file CREDITS for list of people who contributed to this
* project.
*
* Licensed under the GPL-2 or later.
*/
#include <config.h>
#include <common.h>
#include <command.h>
#include <asm/blackfin.h>
#include <asm/mach-common/bits/bootrom.h>
/*
* the bootldr command loads an address, checks to see if there
* is a Boot stream that the on-chip BOOTROM can understand,
* and loads it via the BOOTROM Callback. It is possible
* to also add booting from SPI, or TWI, but this function does
* not currently support that.
*/
int do_bootldr(cmd_tbl_t *cmdtp, int flag, int argc, char *argv[])
{
void *addr;
uint32_t *data;
/* Get the address */
if (argc < 2)
addr = (void *)load_addr;
else
addr = (void *)simple_strtoul(argv[1], NULL, 16);
/* Check if it is a LDR file */
data = addr;
#if defined(__ADSPBF54x__) || defined(__ADSPBF52x__)
if ((*data & 0xFF000000) == 0xAD000000 && data[2] == 0x00000000) {
#else
if (*data == 0xFF800060 || *data == 0xFF800040 || *data == 0xFF800020) {
#endif
/* We want to boot from FLASH or SDRAM */
printf("## Booting ldr image at 0x%p ...\n", addr);
icache_disable();
dcache_disable();
__asm__(
"jump (%1);"
:
: "q7" (addr), "a" (_BOOTROM_MEMBOOT));
} else
printf("## No ldr image at address 0x%p\n", addr);
return 0;
}
U_BOOT_CMD(bootldr, 2, 0, do_bootldr,
"bootldr - boot ldr image from memory\n",
"[addr]\n"
" - boot ldr image stored in memory\n");
/*
* cmd_cplbinfo.c - dump the instruction/data cplb tables
*
* Copyright (c) 2007-2008 Analog Devices Inc.
*
* Licensed under the GPL-2 or later.
*/
#include <common.h>
#include <command.h>
#include <asm/blackfin.h>
#include <asm/cplb.h>
#include <asm/mach-common/bits/mpu.h>
/*
* Translate the PAGE_SIZE bits into a human string
*/
static const char *cplb_page_size(uint32_t data)
{
static const char page_size_string_table[][4] = { "1K", "4K", "1M", "4M" };
return page_size_string_table[(data & PAGE_SIZE_MASK) >> PAGE_SIZE_SHIFT];
}
/*
* show a hardware cplb table
*/
static void show_cplb_table(uint32_t *addr, uint32_t *data)
{
size_t i;
printf(" Address Data Size Valid Locked\n");
for (i = 1; i <= 16; ++i) {
printf(" %2i 0x%p 0x%05X %s %c %c\n",
i, *addr, *data,
cplb_page_size(*data),
(*data & CPLB_VALID ? 'Y' : 'N'),
(*data & CPLB_LOCK ? 'Y' : 'N'));
++addr;
++data;
}
}
/*
* display current instruction and data cplb tables
*/
int do_cplbinfo(cmd_tbl_t *cmdtp, int flag, int argc, char *argv[])
{
printf("%s CPLB table [%08x]:\n", "Instruction", *(uint32_t *)DMEM_CONTROL);
show_cplb_table((uint32_t *)ICPLB_ADDR0, (uint32_t *)ICPLB_DATA0);
printf("%s CPLB table [%08x]:\n", "Data", *(uint32_t *)IMEM_CONTROL);
show_cplb_table((uint32_t *)DCPLB_ADDR0, (uint32_t *)DCPLB_DATA0);
return 0;
}
U_BOOT_CMD(cplbinfo, 1, 0, do_cplbinfo,
"cplbinfo- display current CPLB tables\n",
"\n"
" - display current CPLB tables\n");
......@@ -5,6 +5,8 @@
#ifndef __CONFIG_EZKIT533_H__
#define __CONFIG_EZKIT533_H__
#include <asm/blackfin-config-pre.h>
#define CONFIG_BAUDRATE 57600
#define CONFIG_STAMP 1
......@@ -41,10 +43,7 @@
#define CONFIG_PANIC_HANG 1
#define ADSP_BF531 0x31
#define ADSP_BF532 0x32
#define ADSP_BF533 0x33
#define BFIN_CPU ADSP_BF533
#define CONFIG_BFIN_CPU bf533-0.3
/* This sets the default state of the cache on U-Boot's boot */
#define CONFIG_ICACHE_ON
......@@ -120,7 +119,7 @@
#define CONFIG_BOOTARGS "root=/dev/mtdblock0 ip=192.168.0.15:192.168.0.2:192.168.0.1:255.255.255.0:ezkit:eth0:off console=ttyBF0,57600"
#define CFG_PROMPT "ezkit> " /* Monitor Command Prompt */
#define CFG_PROMPT "bfin> " /* Monitor Command Prompt */
#if defined(CONFIG_CMD_KGDB)
#define CFG_CBSIZE 1024 /* Console I/O Buffer Size */
#else
......
......@@ -5,6 +5,8 @@
#ifndef __CONFIG_STAMP_H__
#define __CONFIG_STAMP_H__
#include <asm/blackfin-config-pre.h>
#define CONFIG_STAMP 1
#define CONFIG_RTC_BFIN 1
#define CONFIG_BF533 1
......@@ -21,10 +23,7 @@
#define CONFIG_PANIC_HANG 1
#define ADSP_BF531 0x31
#define ADSP_BF532 0x32
#define ADSP_BF533 0x33
#define BFIN_CPU ADSP_BF533
#define CONFIG_BFIN_CPU bf533-0.3
/* This sets the default state of the cache on U-Boot's boot */
#define CONFIG_ICACHE_ON
......@@ -329,23 +328,7 @@
#define CONFIG_BAUDRATE 57600
#define CFG_BAUDRATE_TABLE { 9600, 19200, 38400, 57600, 115200 }
#if (BFIN_BOOT_MODE == BF533_SPI_BOOT)
#if (BFIN_CPU == ADSP_BF531)
#define CFG_PROMPT "serial_bf531> " /* Monitor Command Prompt */
#elif (BFIN_CPU == ADSP_BF532)
#define CFG_PROMPT "serial_bf532> " /* Monitor Command Prompt */
#else
#define CFG_PROMPT "serial_bf533> " /* Monitor Command Prompt */
#endif
#else
#if (BFIN_CPU == ADSP_BF531)
#define CFG_PROMPT "bf531> " /* Monitor Command Prompt */
#elif (BFIN_CPU == ADSP_BF532)
#define CFG_PROMPT "bf532> " /* Monitor Command Prompt */
#else
#define CFG_PROMPT "bf533> " /* Monitor Command Prompt */
#endif
#endif
#define CFG_PROMPT "bfin> " /* Monitor Command Prompt */
#if defined(CONFIG_CMD_KGDB)
#define CFG_CBSIZE 1024 /* Console I/O Buffer Size */
......
......@@ -5,6 +5,8 @@
#ifndef __CONFIG_BF537_H__
#define __CONFIG_BF537_H__
#include <asm/blackfin-config-pre.h>
#define CFG_LONGHELP 1
#define CONFIG_CMDLINE_EDITING 1
#define CONFIG_BAUDRATE 57600
......@@ -31,10 +33,8 @@
#define CONFIG_PANIC_HANG 1
#define ADSP_BF534 0x34
#define ADSP_BF536 0x36
#define ADSP_BF537 0x37
#define BFIN_CPU ADSP_BF537
#define CONFIG_BFIN_CPU bf537-0.2
#define CONFIG_BFIN_MAC
/* This sets the default state of the cache on U-Boot's boot */
#define CONFIG_ICACHE_ON
......@@ -113,7 +113,7 @@
* Network Settings
*/
/* network support */
#if (BFIN_CPU != ADSP_BF534)
#ifdef CONFIG_BFIN_MAC
#define CONFIG_IPADDR 192.168.0.15
#define CONFIG_NETMASK 255.255.255.0
#define CONFIG_GATEWAYIP 192.168.0.1
......@@ -186,7 +186,7 @@
#define CONFIG_CMD_EEPROM
#define CONFIG_CMD_DATE
#if (BFIN_CPU == ADSP_BF534)
#ifndef CONFIG_BFIN_MAC
#undef CONFIG_CMD_NET
#else
#define CONFIG_CMD_PING
......@@ -219,7 +219,7 @@
#define CONFIG_LOADADDR 0x1000000
#if (BFIN_BOOT_MODE == BF537_BYPASS_BOOT)
#if (BFIN_CPU != ADSP_BF534)
#ifdef CONFIG_BFIN_MAC
#define CONFIG_EXTRA_ENV_SETTINGS \
"ramargs=setenv bootargs root=/dev/mtdblock0 rw console=ttyBF0,57600\0" \
"nfsargs=setenv bootargs root=/dev/nfs rw " \
......@@ -243,7 +243,7 @@
""
#endif
#elif (BFIN_BOOT_MODE == BF537_SPI_MASTER_BOOT)
#if (BFIN_CPU != ADSP_BF534)
#ifdef CONFIG_BFIN_MAC
#define CONFIG_EXTRA_ENV_SETTINGS \
"ramargs=setenv bootargs root=/dev/mtdblock0 rw console=ttyBF0,57600\0" \
"nfsargs=setenv bootargs root=/dev/nfs rw " \
......@@ -267,23 +267,7 @@
#endif
#endif
#if (BFIN_BOOT_MODE == BF537_SPI_MASTER_BOOT)
#if (BFIN_CPU == ADSP_BF534)
#define CFG_PROMPT "serial_bf534> " /* Monitor Command Prompt */
#elif (BFIN_CPU == ADSP_BF536)
#define CFG_PROMPT "serial_bf536> " /* Monitor Command Prompt */
#else
#define CFG_PROMPT "serial_bf537> " /* Monitor Command Prompt */
#endif
#else
#if (BFIN_CPU == ADSP_BF534)
#define CFG_PROMPT "bf534> " /* Monitor Command Prompt */
#elif (BFIN_CPU == ADSP_BF536)
#define CFG_PROMPT "bf536> " /* Monitor Command Prompt */
#else
#define CFG_PROMPT "bf537> " /* Monitor Command Prompt */
#endif
#endif
#define CFG_PROMPT "bfin> " /* Monitor Command Prompt */
#if defined(CONFIG_CMD_KGDB)
#define CFG_CBSIZE 1024 /* Console I/O Buffer Size */
......@@ -302,6 +286,11 @@
#define CFG_SDRAM_BASE 0x00000000
#define CFG_FLASH_BASE 0x20000000
#define CFG_FLASH_CFI /* The flash is CFI compatible */
#define CFG_FLASH_CFI_DRIVER /* Use common CFI driver */
#define CFG_FLASH_PROTECTION
#define CFG_MAX_FLASH_BANKS 1
#define CFG_MAX_FLASH_SECT 71 /* some have 67 sectors (M29W320DB), but newer have 71 (M29W320EB) */
#define CFG_MONITOR_LEN (256 << 10) /* Reserve 256 kB for Monitor */
#define CFG_MONITOR_BASE (CFG_MAX_RAM_SIZE - CFG_MONITOR_LEN)
......@@ -311,10 +300,6 @@
#define CFG_GBL_DATA_ADDR (CFG_MALLOC_BASE - CFG_GBL_DATA_SIZE)
#define CONFIG_STACKBASE (CFG_GBL_DATA_ADDR - 4)
#define CFG_BOOTMAPSZ (8 << 20) /* Initial Memory map for Linux */
#define CFG_MAX_FLASH_BANKS 1 /* max number of memory banks */
#define CFG_MAX_FLASH_SECT 71 /* max number of sectors on one chip */
#if (BFIN_BOOT_MODE == BF537_BYPASS_BOOT) || (BFIN_BOOT_MODE == BF537_UART_BOOT)
/* for bf537-stamp, usrt boot mode still store env in flash */
#define CFG_ENV_IS_IN_FLASH 1
......
......@@ -5,6 +5,8 @@
#ifndef __CONFIG_EZKIT561_H__
#define __CONFIG_EZKIT561_H__
#include <asm/blackfin-config-pre.h>
#define CONFIG_VDSP 1
#define CONFIG_BF561 1
......@@ -18,6 +20,8 @@
#define CONFIG_PANIC_HANG 1
#define CONFIG_BFIN_CPU bf561-0.3
/*
* Boot Mode Set
* Blackfin can support several boot modes
......@@ -216,7 +220,7 @@
*/
#define CFG_BAUDRATE_TABLE { 9600, 19200, 38400, 57600, 115200 }
#define CFG_PROMPT "ezkit> " /* Monitor Command Prompt */
#define CFG_PROMPT "bfin> " /* Monitor Command Prompt */
#if defined(CONFIG_CMD_KGDB)
#define CFG_CBSIZE 1024 /* Console I/O Buffer Size */
......
......@@ -116,6 +116,7 @@ static int display_banner(void)
{
sprintf(version_string, VERSION_STRING_FORMAT, VERSION_STRING);
printf("%s\n", version_string);
printf("CPU: ADSP " MK_STR(CONFIG_BFIN_CPU) " (Detected Rev: 0.%d)\n", bfin_revid());
return (0);
}
......@@ -404,7 +405,7 @@ void board_init_r(gd_t * id, ulong dest_addr)
misc_init_r();
#endif
#if ((BFIN_CPU == ADSP_BF537) || (BFIN_CPU == ADSP_BF536))
#ifdef CONFIG_CMD_NET
printf("Net: ");
eth_initialize(bd);
#endif
......
......@@ -31,6 +31,7 @@
*/
.globl _memcmp;
.type _memcmp, STT_FUNC;
_memcmp:
I1 = P3;
P0 = R0; /* P0 = s1 address */
......@@ -98,3 +99,5 @@ _memcmp:
R0 = 0;
P3 = I1;
RTS;
.size _memcmp, .-_memcmp
......@@ -23,6 +23,7 @@
.align 2
.globl _memcpy_ASM;
.type _memcpy_ASM, STT_FUNC;
_memcpy_ASM:
CC = R2 <= 0; /* length not positive?*/
IF CC JUMP .L_P1L2147483647; /* Nothing to do */
......@@ -112,3 +113,5 @@ _memcpy_ASM:
B[P0--] = R1;
RTS;
.size _memcpy_ASM, .-_memcpy_ASM
......@@ -31,6 +31,7 @@
*/
.globl _memmove;
.type _memmove, STT_FUNC;
_memmove:
I1 = P3;
P0 = R0; /* P0 = To address */
......@@ -91,3 +92,5 @@ _memmove:
.Lno_loop: B[P0] = R1;
P3 = I1;
RTS;
.size _memmove, .-_memmove
......@@ -31,6 +31,7 @@
*/
.globl _memset;
.type _memset, STT_FUNC;
_memset:
P0 = R0 ; /* P0 = address */
P2 = R2 ; /* P2 = count */
......@@ -91,3 +92,5 @@ _memset:
B[P0++] = R1;
B[P0++] = R1;
JUMP .Laligned;
.size _memset, .-_memset
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