* Patch by Nicolas Lacressonniere, 11 Jun 2003:
Modifications for Atmel AT91RM9200DK ARM920T based development kit
- Add Atmel DataFlash support for reading and writing.
- Add possibility to boot a Linux from DataFlash with BOOTM command.
- Add Flash detection on Atmel AT91RM9200DK
(between Atmel AT49BV1614 and AT49BV1614A flashes)
- Replace old Ethernet PHY layer functions
- Change link address
* Patch by Frank Smith, 9 Jun 2003:
use CRIT_EXCEPTION for machine check on 4xx
* Patch by Detlev Zundel, 13 Jun 2003:
added implementation of the "carinfo" command in cmd_immap.c
This commit is contained in:
@@ -30,28 +30,35 @@
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* Miscelaneous platform dependent initialisations
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*/
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int board_init(void)
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{
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DECLARE_GLOBAL_DATA_PTR;
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int board_init (void)
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{
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DECLARE_GLOBAL_DATA_PTR;
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/* memory and cpu-speed are setup before relocation */
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/* so we do _nothing_ here */
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/* Enable Ctrlc */
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console_init_f ();
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/* arch number of AT91RM9200DK-Board */
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gd->bd->bi_arch_number = 251;
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/* adress of boot parameters */
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gd->bd->bi_boot_params = PHYS_SDRAM + 0x100;
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/* Correct IRDA resistor problem */
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/* Set PA23_TXD in Output */
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(AT91PS_PIO) AT91C_BASE_PIOA->PIO_OER = AT91C_PA23_TXD2;
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return 0;
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/* memory and cpu-speed are setup before relocation */
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/* so we do _nothing_ here */
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/* arch number of AT91RM9200DK-Board */
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gd->bd->bi_arch_number = 251;
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/* adress of boot parameters */
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gd->bd->bi_boot_params = PHYS_SDRAM + 0x100;
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return 0;
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}
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int dram_init(void)
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int dram_init (void)
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{
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DECLARE_GLOBAL_DATA_PTR;
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DECLARE_GLOBAL_DATA_PTR;
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gd->bd->bi_dram[0].start = PHYS_SDRAM;
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gd->bd->bi_dram[0].size = PHYS_SDRAM_SIZE;
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return 0;
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gd->bd->bi_dram[0].start = PHYS_SDRAM;
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gd->bd->bi_dram[0].size = PHYS_SDRAM_SIZE;
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return 0;
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}
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/*
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@@ -59,47 +66,47 @@ int dram_init(void)
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* The NAND lives in the CS2* space
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*/
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#if (CONFIG_COMMANDS & CFG_CMD_NAND)
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extern void
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nand_probe(ulong physadr);
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extern void nand_probe (ulong physadr);
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#define AT91_SMARTMEDIA_BASE 0x40000000 /* physical address to access memory on NCS3 */
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void
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nand_init(void)
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#define AT91_SMARTMEDIA_BASE 0x40000000 /* physical address to access memory on NCS3 */
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void nand_init (void)
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{
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/* Setup Smart Media, fitst enable the address range of CS3 */
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*AT91C_EBI_CSA |= AT91C_EBI_CS3A_SMC_SmartMedia;
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/* set the bus interface characteristics based on
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tDS Data Set up Time 30 - ns
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tDH Data Hold Time 20 - ns
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tALS ALE Set up Time 20 - ns
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16ns at 60 MHz ~= 3 */
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*AT91C_EBI_CSA |= AT91C_EBI_CS3A_SMC_SmartMedia;
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/* set the bus interface characteristics based on
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tDS Data Set up Time 30 - ns
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tDH Data Hold Time 20 - ns
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tALS ALE Set up Time 20 - ns
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16ns at 60 MHz ~= 3 */
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/*memory mapping structures */
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#define SM_ID_RWH (5 << 28)
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#define SM_RWH (1 << 28)
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#define SM_RWS (0 << 24)
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#define SM_TDF (1 << 8)
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#define SM_NWS (3)
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AT91C_BASE_SMC2->SMC2_CSR[3] = ( SM_RWH|SM_RWS | AT91C_SMC2_ACSS_STANDARD |
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AT91C_SMC2_DBW_8 | SM_TDF |
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AT91C_SMC2_WSEN | SM_NWS);
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AT91C_BASE_SMC2->SMC2_CSR[3] = (SM_RWH | SM_RWS |
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AT91C_SMC2_ACSS_STANDARD | AT91C_SMC2_DBW_8 |
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SM_TDF | AT91C_SMC2_WSEN | SM_NWS);
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/* enable the SMOE line PC0=SMCE, A21=CLE, A22=ALE */
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*AT91C_PIOC_ASR = AT91C_PC0_BFCK | AT91C_PC1_BFRDY_SMOE | AT91C_PC3_BFBAA_SMWE;
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*AT91C_PIOC_PDR = AT91C_PC0_BFCK | AT91C_PC1_BFRDY_SMOE | AT91C_PC3_BFBAA_SMWE;
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/* enable the SMOE line PC0=SMCE, A21=CLE, A22=ALE */
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*AT91C_PIOC_ASR = AT91C_PC0_BFCK | AT91C_PC1_BFRDY_SMOE |
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AT91C_PC3_BFBAA_SMWE;
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*AT91C_PIOC_PDR = AT91C_PC0_BFCK | AT91C_PC1_BFRDY_SMOE |
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AT91C_PC3_BFBAA_SMWE;
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/* Configure PC2 as input (signal READY of the SmartMedia) */
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*AT91C_PIOC_PER = AT91C_PC2_BFAVD; /* enable direct output enable */
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*AT91C_PIOC_ODR = AT91C_PC2_BFAVD; /* disable output */
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*AT91C_PIOC_PER = AT91C_PC2_BFAVD; /* enable direct output enable */
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*AT91C_PIOC_ODR = AT91C_PC2_BFAVD; /* disable output */
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/* Configure PB1 as input (signal Card Detect of the SmartMedia) */
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*AT91C_PIOB_PER = AT91C_PIO_PB1; /* enable direct output enable */
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*AT91C_PIOB_ODR = AT91C_PIO_PB1; /* disable output */
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*AT91C_PIOB_PER = AT91C_PIO_PB1; /* enable direct output enable */
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*AT91C_PIOB_ODR = AT91C_PIO_PB1; /* disable output */
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if (*AT91C_PIOB_PDSR & AT91C_PIO_PB1)
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printf ("No ");
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printf ("SmartMedia card inserted\n");
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if (*AT91C_PIOB_PDSR & AT91C_PIO_PB1)
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printf ("No ");
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printf ("SmartMedia card inserted\n");
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printf("Probing at 0x%.8x\n", AT91_SMARTMEDIA_BASE);
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nand_probe(AT91_SMARTMEDIA_BASE);
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printf ("Probing at 0x%.8x\n", AT91_SMARTMEDIA_BASE);
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nand_probe (AT91_SMARTMEDIA_BASE);
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}
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#endif
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@@ -1,2 +1,2 @@
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TEXT_BASE = 0x21fa0000
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TEXT_BASE = 0x21f00000
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@@ -31,11 +31,40 @@
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ulong myflush(void);
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/* Flash Organization Structure */
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typedef struct OrgDef
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{
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unsigned int sector_number;
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unsigned int sector_size;
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} OrgDef;
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/* Flash Organizations */
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OrgDef OrgAT49BV16x4[] =
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{
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{ 8, 8*1024 }, /* 8 * 8kBytes sectors */
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{ 2, 32*1024 }, /* 2 * 32kBytes sectors */
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{ 30, 64*1024 } /* 30 * 64kBytes sectors */
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};
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OrgDef OrgAT49BV16x4A[] =
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{
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{ 8, 8*1024 }, /* 8 * 8kBytes sectors */
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{ 31, 64*1024 } /* 31 * 64kBytes sectors */
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};
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#define FLASH_BANK_SIZE 0x200000 /* 2 MB */
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#define MAIN_SECT_SIZE 0x10000 /* 64 KB */
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flash_info_t flash_info[CFG_MAX_FLASH_BANKS];
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/* AT49BV1614A Codes */
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#define FLASH_CODE1 0xAA
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#define FLASH_CODE2 0x55
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#define ID_IN_CODE 0x90
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#define ID_OUT_CODE 0xF0
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#define CMD_READ_ARRAY 0x00F0
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#define CMD_UNLOCK1 0x00AA
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@@ -48,6 +77,9 @@ flash_info_t flash_info[CFG_MAX_FLASH_BANKS];
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#define MEM_FLASH_ADDR1 (*(volatile u16 *)(CFG_FLASH_BASE + (0x00005555<<1)))
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#define MEM_FLASH_ADDR2 (*(volatile u16 *)(CFG_FLASH_BASE + (0x00002AAA<<1)))
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#define IDENT_FLASH_ADDR1 (*(volatile u16 *)(CFG_FLASH_BASE + (0x0000555<<1)))
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#define IDENT_FLASH_ADDR2 (*(volatile u16 *)(CFG_FLASH_BASE + (0x0000AAA<<1)))
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#define BIT_ERASE_DONE 0x0080
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#define BIT_RDY_MASK 0x0080
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#define BIT_PROGRAM_ERROR 0x0020
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@@ -59,339 +91,375 @@ flash_info_t flash_info[CFG_MAX_FLASH_BANKS];
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/*-----------------------------------------------------------------------
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*/
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ulong flash_init(void)
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void flash_identification (flash_info_t * info)
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{
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int i, j;
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ulong size = 0;
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volatile u16 manuf_code, device_code, add_device_code;
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for (i = 0; i < CFG_MAX_FLASH_BANKS; i++)
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{
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ulong flashbase = 0;
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flash_info[i].flash_id =
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(ATM_MANUFACT & FLASH_VENDMASK) |
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(ATM_ID_BV1614 & FLASH_TYPEMASK);
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flash_info[i].size = FLASH_BANK_SIZE;
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flash_info[i].sector_count = CFG_MAX_FLASH_SECT;
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memset(flash_info[i].protect, 0, CFG_MAX_FLASH_SECT);
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if (i == 0)
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flashbase = PHYS_FLASH_1;
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else
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panic("configured to many flash banks!\n");
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for (j = 0; j < flash_info[i].sector_count; j++)
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{
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IDENT_FLASH_ADDR1 = FLASH_CODE1;
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IDENT_FLASH_ADDR2 = FLASH_CODE2;
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IDENT_FLASH_ADDR1 = ID_IN_CODE;
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if (j <= 9)
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{
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/* 1st to 8th are 8 KB */
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if (j <= 7)
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{
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flash_info[i].start[j] = flashbase + j*0x2000;
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manuf_code = *(volatile u16 *) CFG_FLASH_BASE;
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device_code = *(volatile u16 *) (CFG_FLASH_BASE + 2);
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add_device_code = *(volatile u16 *) (CFG_FLASH_BASE + (3 << 1));
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IDENT_FLASH_ADDR1 = FLASH_CODE1;
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IDENT_FLASH_ADDR2 = FLASH_CODE2;
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IDENT_FLASH_ADDR1 = ID_OUT_CODE;
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/* Vendor type */
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info->flash_id = ATM_MANUFACT & FLASH_VENDMASK;
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printf ("Atmel: ");
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if ((device_code & FLASH_TYPEMASK) == (ATM_ID_BV1614 & FLASH_TYPEMASK)) {
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if ((add_device_code & FLASH_TYPEMASK) ==
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(ATM_ID_BV1614A & FLASH_TYPEMASK)) {
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info->flash_id |= ATM_ID_BV1614A & FLASH_TYPEMASK;
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printf ("AT49BV1614A (16Mbit)\n");
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}
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/* 9th and 10th are both 32 KB */
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if ((j == 8) || (j == 9))
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{
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flash_info[i].start[j] = flashbase + 0x10000 + (j-8)*0x8000;
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}
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}
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else
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{
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flash_info[i].start[j] = flashbase + (j-8)*MAIN_SECT_SIZE;
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}
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} else { /* AT49BV1614 Flash */
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info->flash_id |= ATM_ID_BV1614 & FLASH_TYPEMASK;
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printf ("AT49BV1614 (16Mbit)\n");
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}
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size += flash_info[i].size;
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}
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}
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flash_protect(FLAG_PROTECT_SET,
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CFG_FLASH_BASE,
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CFG_ENV_ADDR - 1,
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&flash_info[0]);
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flash_protect(FLAG_PROTECT_SET,
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CFG_ENV_ADDR,
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CFG_ENV_ADDR + CFG_ENV_SIZE - 1,
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&flash_info[0]);
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ulong flash_init (void)
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{
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int i, j, k;
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unsigned int flash_nb_blocks, sector;
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unsigned int start_address;
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OrgDef *pOrgDef;
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return size;
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ulong size = 0;
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for (i = 0; i < CFG_MAX_FLASH_BANKS; i++) {
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ulong flashbase = 0;
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flash_identification (&flash_info[i]);
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flash_info[i].size = FLASH_BANK_SIZE;
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if ((flash_info[i].flash_id & FLASH_TYPEMASK) ==
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(ATM_ID_BV1614 & FLASH_TYPEMASK)) {
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flash_info[i].sector_count = CFG_MAX_FLASH_SECT;
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memset (flash_info[i].protect, 0, CFG_MAX_FLASH_SECT);
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pOrgDef = OrgAT49BV16x4;
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flash_nb_blocks = sizeof (OrgAT49BV16x4) / sizeof (OrgDef);
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} else { /* AT49BV1614A Flash */
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flash_info[i].sector_count = CFG_MAX_FLASH_SECT - 1;
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memset (flash_info[i].protect, 0, CFG_MAX_FLASH_SECT - 1);
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pOrgDef = OrgAT49BV16x4A;
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flash_nb_blocks = sizeof (OrgAT49BV16x4A) / sizeof (OrgDef);
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}
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if (i == 0)
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flashbase = PHYS_FLASH_1;
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else
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panic ("configured to many flash banks!\n");
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sector = 0;
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start_address = flashbase;
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for (j = 0; j < flash_nb_blocks; j++) {
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for (k = 0; k < pOrgDef[j].sector_number; k++) {
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flash_info[i].start[sector++] = start_address;
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start_address += pOrgDef[j].sector_size;
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}
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}
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size += flash_info[i].size;
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}
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/* Protect binary boot image */
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flash_protect (FLAG_PROTECT_SET,
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CFG_FLASH_BASE,
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CFG_FLASH_BASE + CFG_BOOT_SIZE - 1, &flash_info[0]);
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/* Protect environment variables */
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flash_protect (FLAG_PROTECT_SET,
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CFG_ENV_ADDR,
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CFG_ENV_ADDR + CFG_ENV_SIZE - 1, &flash_info[0]);
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/* Protect U-Boot gzipped image */
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flash_protect (FLAG_PROTECT_SET,
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CFG_U_BOOT_BASE,
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CFG_U_BOOT_BASE + CFG_U_BOOT_SIZE - 1, &flash_info[0]);
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return size;
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}
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/*-----------------------------------------------------------------------
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*/
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void flash_print_info (flash_info_t *info)
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void flash_print_info (flash_info_t * info)
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{
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int i;
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int i;
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switch (info->flash_id & FLASH_VENDMASK)
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{
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case (ATM_MANUFACT & FLASH_VENDMASK):
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printf("Atmel: ");
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break;
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default:
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printf("Unknown Vendor ");
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break;
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}
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switch (info->flash_id & FLASH_TYPEMASK)
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{
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case (ATM_ID_BV1614 & FLASH_TYPEMASK):
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printf("AT49BV1614 (16Mbit)\n");
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break;
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default:
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printf("Unknown Chip Type\n");
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goto Done;
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break;
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}
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printf(" Size: %ld MB in %d Sectors\n",
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info->size >> 20, info->sector_count);
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printf(" Sector Start Addresses:");
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for (i = 0; i < info->sector_count; i++)
|
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{
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if ((i % 5) == 0)
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{
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printf ("\n ");
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switch (info->flash_id & FLASH_VENDMASK) {
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case (ATM_MANUFACT & FLASH_VENDMASK):
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printf ("Atmel: ");
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break;
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default:
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printf ("Unknown Vendor ");
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break;
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}
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printf (" %08lX%s", info->start[i],
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info->protect[i] ? " (RO)" : " ");
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}
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printf ("\n");
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Done:
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switch (info->flash_id & FLASH_TYPEMASK) {
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case (ATM_ID_BV1614 & FLASH_TYPEMASK):
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printf ("AT49BV1614 (16Mbit)\n");
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break;
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case (ATM_ID_BV1614A & FLASH_TYPEMASK):
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printf ("AT49BV1614A (16Mbit)\n");
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break;
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default:
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printf ("Unknown Chip Type\n");
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goto Done;
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break;
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}
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printf (" Size: %ld MB in %d Sectors\n",
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info->size >> 20, info->sector_count);
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printf (" Sector Start Addresses:");
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for (i = 0; i < info->sector_count; i++) {
|
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if ((i % 5) == 0) {
|
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printf ("\n ");
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}
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printf (" %08lX%s", info->start[i],
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info->protect[i] ? " (RO)" : " ");
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}
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printf ("\n");
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Done:
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}
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/*-----------------------------------------------------------------------
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*/
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int flash_erase (flash_info_t *info, int s_first, int s_last)
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int flash_erase (flash_info_t * info, int s_first, int s_last)
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{
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ulong result;
|
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int iflag, cflag, prot, sect;
|
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int rc = ERR_OK;
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int chip1;
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ulong result;
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int iflag, cflag, prot, sect;
|
||||
int rc = ERR_OK;
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int chip1;
|
||||
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/* first look for protection bits */
|
||||
/* first look for protection bits */
|
||||
|
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if (info->flash_id == FLASH_UNKNOWN)
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return ERR_UNKNOWN_FLASH_TYPE;
|
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if (info->flash_id == FLASH_UNKNOWN)
|
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return ERR_UNKNOWN_FLASH_TYPE;
|
||||
|
||||
if ((s_first < 0) || (s_first > s_last)) {
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return ERR_INVAL;
|
||||
}
|
||||
|
||||
if ((info->flash_id & FLASH_VENDMASK) !=
|
||||
(ATM_MANUFACT & FLASH_VENDMASK)) {
|
||||
return ERR_UNKNOWN_FLASH_VENDOR;
|
||||
}
|
||||
|
||||
prot = 0;
|
||||
for (sect=s_first; sect<=s_last; ++sect) {
|
||||
if (info->protect[sect]) {
|
||||
prot++;
|
||||
if ((s_first < 0) || (s_first > s_last)) {
|
||||
return ERR_INVAL;
|
||||
}
|
||||
}
|
||||
if (prot)
|
||||
return ERR_PROTECTED;
|
||||
|
||||
/*
|
||||
* Disable interrupts which might cause a timeout
|
||||
* here. Remember that our exception vectors are
|
||||
* at address 0 in the flash, and we don't want a
|
||||
* (ticker) exception to happen while the flash
|
||||
* chip is in programming mode.
|
||||
*/
|
||||
cflag = icache_status();
|
||||
icache_disable();
|
||||
iflag = disable_interrupts();
|
||||
if ((info->flash_id & FLASH_VENDMASK) !=
|
||||
(ATM_MANUFACT & FLASH_VENDMASK)) {
|
||||
return ERR_UNKNOWN_FLASH_VENDOR;
|
||||
}
|
||||
|
||||
/* Start erase on unprotected sectors */
|
||||
for (sect = s_first; sect<=s_last && !ctrlc(); sect++)
|
||||
{
|
||||
printf("Erasing sector %2d ... ", sect);
|
||||
|
||||
/* arm simple, non interrupt dependent timer */
|
||||
reset_timer_masked();
|
||||
|
||||
if (info->protect[sect] == 0)
|
||||
{ /* not protected */
|
||||
volatile u16 *addr = (volatile u16 *)(info->start[sect]);
|
||||
|
||||
MEM_FLASH_ADDR1 = CMD_UNLOCK1;
|
||||
MEM_FLASH_ADDR2 = CMD_UNLOCK2;
|
||||
MEM_FLASH_ADDR1 = CMD_ERASE_SETUP;
|
||||
|
||||
MEM_FLASH_ADDR1 = CMD_UNLOCK1;
|
||||
MEM_FLASH_ADDR2 = CMD_UNLOCK2;
|
||||
*addr = CMD_ERASE_CONFIRM;
|
||||
|
||||
/* wait until flash is ready */
|
||||
chip1 = 0;
|
||||
|
||||
do
|
||||
{
|
||||
result = *addr;
|
||||
|
||||
/* check timeout */
|
||||
if (get_timer_masked() > CFG_FLASH_ERASE_TOUT)
|
||||
{
|
||||
MEM_FLASH_ADDR1 = CMD_READ_ARRAY;
|
||||
chip1 = TMO;
|
||||
break;
|
||||
prot = 0;
|
||||
for (sect = s_first; sect <= s_last; ++sect) {
|
||||
if (info->protect[sect]) {
|
||||
prot++;
|
||||
}
|
||||
|
||||
if (!chip1 && (result & 0xFFFF) & BIT_ERASE_DONE)
|
||||
chip1 = READY;
|
||||
|
||||
} while (!chip1);
|
||||
|
||||
MEM_FLASH_ADDR1 = CMD_READ_ARRAY;
|
||||
|
||||
if (chip1 == ERR)
|
||||
{
|
||||
rc = ERR_PROG_ERROR;
|
||||
goto outahere;
|
||||
}
|
||||
if (chip1 == TMO)
|
||||
{
|
||||
rc = ERR_TIMOUT;
|
||||
goto outahere;
|
||||
}
|
||||
|
||||
printf("ok.\n");
|
||||
}
|
||||
else /* it was protected */
|
||||
{
|
||||
printf("protected!\n");
|
||||
}
|
||||
}
|
||||
if (prot)
|
||||
return ERR_PROTECTED;
|
||||
|
||||
if (ctrlc())
|
||||
printf("User Interrupt!\n");
|
||||
/*
|
||||
* Disable interrupts which might cause a timeout
|
||||
* here. Remember that our exception vectors are
|
||||
* at address 0 in the flash, and we don't want a
|
||||
* (ticker) exception to happen while the flash
|
||||
* chip is in programming mode.
|
||||
*/
|
||||
cflag = icache_status ();
|
||||
icache_disable ();
|
||||
iflag = disable_interrupts ();
|
||||
|
||||
/* Start erase on unprotected sectors */
|
||||
for (sect = s_first; sect <= s_last && !ctrlc (); sect++) {
|
||||
printf ("Erasing sector %2d ... ", sect);
|
||||
|
||||
/* arm simple, non interrupt dependent timer */
|
||||
reset_timer_masked ();
|
||||
|
||||
if (info->protect[sect] == 0) { /* not protected */
|
||||
volatile u16 *addr = (volatile u16 *) (info->start[sect]);
|
||||
|
||||
MEM_FLASH_ADDR1 = CMD_UNLOCK1;
|
||||
MEM_FLASH_ADDR2 = CMD_UNLOCK2;
|
||||
MEM_FLASH_ADDR1 = CMD_ERASE_SETUP;
|
||||
|
||||
MEM_FLASH_ADDR1 = CMD_UNLOCK1;
|
||||
MEM_FLASH_ADDR2 = CMD_UNLOCK2;
|
||||
*addr = CMD_ERASE_CONFIRM;
|
||||
|
||||
/* wait until flash is ready */
|
||||
chip1 = 0;
|
||||
|
||||
do {
|
||||
result = *addr;
|
||||
|
||||
/* check timeout */
|
||||
if (get_timer_masked () > CFG_FLASH_ERASE_TOUT) {
|
||||
MEM_FLASH_ADDR1 = CMD_READ_ARRAY;
|
||||
chip1 = TMO;
|
||||
break;
|
||||
}
|
||||
|
||||
if (!chip1 && (result & 0xFFFF) & BIT_ERASE_DONE)
|
||||
chip1 = READY;
|
||||
|
||||
} while (!chip1);
|
||||
|
||||
MEM_FLASH_ADDR1 = CMD_READ_ARRAY;
|
||||
|
||||
if (chip1 == ERR) {
|
||||
rc = ERR_PROG_ERROR;
|
||||
goto outahere;
|
||||
}
|
||||
if (chip1 == TMO) {
|
||||
rc = ERR_TIMOUT;
|
||||
goto outahere;
|
||||
}
|
||||
|
||||
printf ("ok.\n");
|
||||
} else { /* it was protected */
|
||||
printf ("protected!\n");
|
||||
}
|
||||
}
|
||||
|
||||
if (ctrlc ())
|
||||
printf ("User Interrupt!\n");
|
||||
|
||||
outahere:
|
||||
/* allow flash to settle - wait 10 ms */
|
||||
udelay_masked(10000);
|
||||
/* allow flash to settle - wait 10 ms */
|
||||
udelay_masked (10000);
|
||||
|
||||
if (iflag)
|
||||
enable_interrupts();
|
||||
if (iflag)
|
||||
enable_interrupts ();
|
||||
|
||||
if (cflag)
|
||||
icache_enable();
|
||||
if (cflag)
|
||||
icache_enable ();
|
||||
|
||||
return rc;
|
||||
return rc;
|
||||
}
|
||||
|
||||
/*-----------------------------------------------------------------------
|
||||
* Copy memory to flash
|
||||
*/
|
||||
|
||||
volatile static int write_word (flash_info_t *info, ulong dest, ulong data)
|
||||
volatile static int write_word (flash_info_t * info, ulong dest,
|
||||
ulong data)
|
||||
{
|
||||
volatile u16 *addr = (volatile u16 *)dest;
|
||||
ulong result;
|
||||
int rc = ERR_OK;
|
||||
int cflag, iflag;
|
||||
int chip1;
|
||||
volatile u16 *addr = (volatile u16 *) dest;
|
||||
ulong result;
|
||||
int rc = ERR_OK;
|
||||
int cflag, iflag;
|
||||
int chip1;
|
||||
|
||||
/*
|
||||
* Check if Flash is (sufficiently) erased
|
||||
*/
|
||||
result = *addr;
|
||||
if ((result & data) != data)
|
||||
return ERR_NOT_ERASED;
|
||||
|
||||
|
||||
/*
|
||||
* Disable interrupts which might cause a timeout
|
||||
* here. Remember that our exception vectors are
|
||||
* at address 0 in the flash, and we don't want a
|
||||
* (ticker) exception to happen while the flash
|
||||
* chip is in programming mode.
|
||||
*/
|
||||
cflag = icache_status();
|
||||
icache_disable();
|
||||
iflag = disable_interrupts();
|
||||
|
||||
MEM_FLASH_ADDR1 = CMD_UNLOCK1;
|
||||
MEM_FLASH_ADDR2 = CMD_UNLOCK2;
|
||||
MEM_FLASH_ADDR1 = CMD_PROGRAM;
|
||||
*addr = data;
|
||||
|
||||
/* arm simple, non interrupt dependent timer */
|
||||
reset_timer_masked();
|
||||
|
||||
/* wait until flash is ready */
|
||||
chip1 = 0;
|
||||
do
|
||||
{
|
||||
/*
|
||||
* Check if Flash is (sufficiently) erased
|
||||
*/
|
||||
result = *addr;
|
||||
if ((result & data) != data)
|
||||
return ERR_NOT_ERASED;
|
||||
|
||||
/* check timeout */
|
||||
if (get_timer_masked() > CFG_FLASH_ERASE_TOUT)
|
||||
{
|
||||
chip1 = ERR | TMO;
|
||||
break;
|
||||
}
|
||||
if (!chip1 && ((result & 0x80) == (data & 0x80)))
|
||||
chip1 = READY;
|
||||
|
||||
} while (!chip1);
|
||||
/*
|
||||
* Disable interrupts which might cause a timeout
|
||||
* here. Remember that our exception vectors are
|
||||
* at address 0 in the flash, and we don't want a
|
||||
* (ticker) exception to happen while the flash
|
||||
* chip is in programming mode.
|
||||
*/
|
||||
cflag = icache_status ();
|
||||
icache_disable ();
|
||||
iflag = disable_interrupts ();
|
||||
|
||||
*addr = CMD_READ_ARRAY;
|
||||
MEM_FLASH_ADDR1 = CMD_UNLOCK1;
|
||||
MEM_FLASH_ADDR2 = CMD_UNLOCK2;
|
||||
MEM_FLASH_ADDR1 = CMD_PROGRAM;
|
||||
*addr = data;
|
||||
|
||||
if (chip1 == ERR || *addr != data)
|
||||
rc = ERR_PROG_ERROR;
|
||||
/* arm simple, non interrupt dependent timer */
|
||||
reset_timer_masked ();
|
||||
|
||||
if (iflag)
|
||||
enable_interrupts();
|
||||
/* wait until flash is ready */
|
||||
chip1 = 0;
|
||||
do {
|
||||
result = *addr;
|
||||
|
||||
if (cflag)
|
||||
icache_enable();
|
||||
/* check timeout */
|
||||
if (get_timer_masked () > CFG_FLASH_ERASE_TOUT) {
|
||||
chip1 = ERR | TMO;
|
||||
break;
|
||||
}
|
||||
if (!chip1 && ((result & 0x80) == (data & 0x80)))
|
||||
chip1 = READY;
|
||||
|
||||
return rc;
|
||||
} while (!chip1);
|
||||
|
||||
*addr = CMD_READ_ARRAY;
|
||||
|
||||
if (chip1 == ERR || *addr != data)
|
||||
rc = ERR_PROG_ERROR;
|
||||
|
||||
if (iflag)
|
||||
enable_interrupts ();
|
||||
|
||||
if (cflag)
|
||||
icache_enable ();
|
||||
|
||||
return rc;
|
||||
}
|
||||
|
||||
/*-----------------------------------------------------------------------
|
||||
* Copy memory to flash.
|
||||
*/
|
||||
|
||||
int write_buff (flash_info_t *info, uchar *src, ulong addr, ulong cnt)
|
||||
int write_buff (flash_info_t * info, uchar * src, ulong addr, ulong cnt)
|
||||
{
|
||||
ulong wp, data;
|
||||
int rc;
|
||||
ulong wp, data;
|
||||
int rc;
|
||||
|
||||
if(addr & 1) {
|
||||
printf("unaligned destination not supported\n");
|
||||
return ERR_ALIGN;
|
||||
};
|
||||
if (addr & 1) {
|
||||
printf ("unaligned destination not supported\n");
|
||||
return ERR_ALIGN;
|
||||
};
|
||||
|
||||
if((int)src & 1) {
|
||||
printf("unaligned source not supported\n");
|
||||
return ERR_ALIGN;
|
||||
};
|
||||
if ((int) src & 1) {
|
||||
printf ("unaligned source not supported\n");
|
||||
return ERR_ALIGN;
|
||||
};
|
||||
|
||||
wp = addr;
|
||||
wp = addr;
|
||||
|
||||
while (cnt >= 2) {
|
||||
data = *((volatile u16*)src);
|
||||
if ((rc = write_word(info, wp, data)) != 0) {
|
||||
return (rc);
|
||||
while (cnt >= 2) {
|
||||
data = *((volatile u16 *) src);
|
||||
if ((rc = write_word (info, wp, data)) != 0) {
|
||||
return (rc);
|
||||
}
|
||||
src += 2;
|
||||
wp += 2;
|
||||
cnt -= 2;
|
||||
}
|
||||
src += 2;
|
||||
wp += 2;
|
||||
cnt -= 2;
|
||||
}
|
||||
|
||||
if(cnt == 1) {
|
||||
data = (*((volatile u8*)src)) | (*((volatile u8*)(wp+1)) << 8);
|
||||
if ((rc = write_word(info, wp, data)) != 0) {
|
||||
return (rc);
|
||||
}
|
||||
src += 1;
|
||||
wp += 1;
|
||||
cnt -= 1;
|
||||
};
|
||||
if (cnt == 1) {
|
||||
data = (*((volatile u8 *) src)) | (*((volatile u8 *) (wp + 1)) <<
|
||||
8);
|
||||
if ((rc = write_word (info, wp, data)) != 0) {
|
||||
return (rc);
|
||||
}
|
||||
src += 1;
|
||||
wp += 1;
|
||||
cnt -= 1;
|
||||
};
|
||||
|
||||
return ERR_OK;
|
||||
return ERR_OK;
|
||||
}
|
||||
|
||||
@@ -299,12 +299,6 @@ int misc_init_r (void)
|
||||
|
||||
void lcd_logo (bd_t * bd)
|
||||
{
|
||||
|
||||
|
||||
volatile immap_t *immap = (immap_t *) CFG_IMMR;
|
||||
|
||||
|
||||
|
||||
FB_INFO_S1D13xxx fb_info;
|
||||
S1D_INDEX s1dReg;
|
||||
S1D_VALUE s1dValue;
|
||||
@@ -328,8 +322,8 @@ void lcd_logo (bd_t * bd)
|
||||
/**/
|
||||
/*----------------------------------------------------------------------------- */
|
||||
memctl = &immr->im_memctl;
|
||||
/* memctl->memc_or5 = 0xFFC007F0; / * 4 MB 17 WS or externel TA */
|
||||
/* memctl->memc_br5 = 0x80000801; / * Start at 0x80000000 */
|
||||
/* memctl->memc_or5 = 0xFFC007F0; / * 4 MB 17 WS or externel TA */
|
||||
/* memctl->memc_br5 = 0x80000801; / * Start at 0x80000000 */
|
||||
|
||||
memctl->memc_or5 = 0xFFC00708; /* 4 MB 17 WS or externel TA */
|
||||
memctl->memc_br5 = 0x80080801; /* Start at 0x80080000 */
|
||||
|
||||
Reference in New Issue
Block a user