TQ335X UBOOT分析(nand部分)

board_init_r() arch\arm\lib\board.c

nand_init() driver\mtd\nand.c

nand_init_chip () driver\mtd\nand.c

nand->IO_ADDR_R = nand->IO_ADDR_W = (void __iomem *)base_addr;

base_addr是nand控制器寄存器的起始地址,定义如下

#define NAND_BASE (0x04000000) include\configs\tq3358.h

board_nand_init () driver\mnt\nand\ti81xx_nand.c

设置nand_chip结构体,提供底层造成函数。

nand->IO_ADDR_R = (void __iomem *)&gpmc_cfg->cs[cs].nand_dat;

nand->IO_ADDR_W = (void __iomem *)&gpmc_cfg->cs[cs].nand_cmd;

gpmc_cdg->cs[cs]应该是nand控制器寄存器地址,nand_dat应该是数据寄存器,

nand_cmd是命令寄存器。

nand->cmd_ctrl = ti81xx_nand_hwcontrol;

ti81xx_nand_hwcontrol() driver\mn\nand\ti81xx_nand.c

实现nandflash 发地址,发命令,片选操作

nand->dev_ready = ti81xx_spl_dev_ready; driver\mn\nand\ti81xx_nand.c

实现nandflash忙状态判断

nand_scan () driver\mn\nand\nand_base.c

nand_scan_ident()

nand_set_defaults() 为nand_chips提供默认的底层函数

if (!chip->select_chip) 提供默认的片选函数

chip->select_chip = nand_select_chip;

if (chip->cmdfunc == NULL) 提供默认的发命令函数

chip->cmdfunc = nand_command;

nand_command有4个参数,mtd_info,命令,列地址,行地址

因此他可以发命令和地址,他的内部实际是调用nand->cmd_ctrl

即ti81xx_nand_hwcontrol()

nand_get_flash_type() 获取nandflash的信息。

chip->select_chip(mtd, 0); 选中芯片

chip->cmdfunc(mtd, NAND_CMD_RESET, -1, -1); 发复位命令

chip->cmdfunc(mtd, NAND_CMD_READID, 0x00, -1); 读ID命令

*maf_id = chip->read_byte(mtd); 读厂家ID

*dev_id = chip->read_byte(mtd); 读芯片ID

for (; type->name != NULL; type++)

if (*dev_id == type->id)

break;

去nand_flash_ids(driver/mtd/nand/nand_ids.c)

这个数组里找到对应的芯片信息。

chip->chipsize = (uint64_t)type->chipsize << 20;

将芯片容量左移20位后放到chip->chipsize中。

add_mtd_device()

将构造好的mtd_info结构体添加到链表中。

实际真正需要自己实现的函数是

select_chip

dev_ready

cmd_ctrl

读写之前给IO_ADDR_R何IO_ADDR_W赋值

gpmc_cfg->cs[cs].nand_cmd

gpmc_cfg->cs[cs].nand_adr

gpmc_cfg->cs[cs].nand_dat

分区部分

mtdparts_init common/cmd_mtdparts.c

parse_mtdids

mtd_device_validate

get_mtd_info

get_mtd_device_nm drivers/mtd/mtdcore.c

------------------------------------------------------------------------------------------------------

static int parse_mtdids(const char *const ids)

构造mtdids结构体,并添加到链表中,其中包含flash的大小

------------------------------------------------------------------------------------------------------

int mtd_device_validate(u8 type, u8 num, u32 *size)

if (get_mtd_info(type, num, &mtd))

return 1;

*size = mtd->size;

得到mtd_info和flash的大小,size是u32类型的,因此将无法存储4G的nand尺寸,4G是2的32次方。

------------------------------------------------------------------------------------------------------

static int get_mtd_info(u8 type, u8 num, struct mtd_info **mtd)

*mtd = get_mtd_device_nm(mtd_dev);

得到mtd_info

------------------------------------------------------------------------------------------------------

struct mtd_info *get_mtd_device_nm(const char *name)

for (i = 0; i < MAX_MTD_DEVICES; i++) {

if (mtd_table[i] && !strcmp(name, mtd_table[i]->name)) {

mtd = mtd_table[i];

break;

}

}

到mtd_info数组中查找mtd_info

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主要改了uboot的几个地方来支持4G nand

1. nand_flash_ids结构体数组增加4g nand的id号。

2. 修改页尺寸,块尺寸,OOB尺寸

3. 修改分区大小,分区大小必须是块尺寸的倍数

4. 将涉及到存储nand大小的变量都修改为unsigned long long,因为4G是2的32次方,unsigned int放不下。



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