提交 eda936ef 编写于 作者: C Chuanxiao Dong 提交者: David Woodhouse

mtd: denali: rename functions which is named by using capitals

rename these functions' name and remove additional declarations
in header file
Signed-off-by: NChuanxiao Dong <chuanxiao.dong@intel.com>
Signed-off-by: NDavid Woodhouse <David.Woodhouse@intel.com>
上级 a99d1796
......@@ -221,7 +221,7 @@ static void reset_bank(struct denali_nand_info *denali)
}
/* Reset the flash controller */
static uint16_t NAND_Flash_Reset(struct denali_nand_info *denali)
static uint16_t denali_nand_reset(struct denali_nand_info *denali)
{
uint32_t i;
......@@ -256,7 +256,7 @@ static uint16_t NAND_Flash_Reset(struct denali_nand_info *denali)
* programs the clocking register accordingly. The mode is determined by
* the get_onfi_nand_para routine.
*/
static void NAND_ONFi_Timing_Mode(struct denali_nand_info *denali,
static void nand_onfi_timing_set(struct denali_nand_info *denali,
uint16_t mode)
{
uint16_t Trea[6] = {40, 30, 25, 20, 20, 16};
......@@ -487,7 +487,7 @@ static uint16_t get_onfi_nand_para(struct denali_nand_info *denali)
break;
}
NAND_ONFi_Timing_Mode(denali, i);
nand_onfi_timing_set(denali, i);
index_addr(denali, MODE_11 | 0, 0x90);
index_addr(denali, MODE_11 | 1, 0);
......@@ -803,7 +803,7 @@ static void dump_device_info(struct denali_nand_info *denali)
denali->dev_info.nBitsInBlockDataSize);
}
static uint16_t NAND_Read_Device_ID(struct denali_nand_info *denali)
static uint16_t denali_nand_timing_set(struct denali_nand_info *denali)
{
uint16_t status = PASS;
uint8_t no_of_planes;
......@@ -928,12 +928,12 @@ static uint16_t NAND_Read_Device_ID(struct denali_nand_info *denali)
* with a specific ONFI mode, we apply those changes here.
*/
if (onfi_timing_mode != NAND_DEFAULT_TIMINGS)
NAND_ONFi_Timing_Mode(denali, onfi_timing_mode);
nand_onfi_timing_set(denali, onfi_timing_mode);
return status;
}
static void NAND_LLD_Enable_Disable_Interrupts(struct denali_nand_info *denali,
static void denali_set_intr_modes(struct denali_nand_info *denali,
uint16_t INT_ENABLE)
{
nand_dbg_print(NAND_DBG_TRACE, "%s, Line %d, Function: %s\n",
......@@ -958,7 +958,7 @@ static void denali_irq_init(struct denali_nand_info *denali)
uint32_t int_mask = 0;
/* Disable global interrupts */
NAND_LLD_Enable_Disable_Interrupts(denali, false);
denali_set_intr_modes(denali, false);
int_mask = DENALI_IRQ_ALL;
......@@ -973,7 +973,7 @@ static void denali_irq_init(struct denali_nand_info *denali)
static void denali_irq_cleanup(int irqnum, struct denali_nand_info *denali)
{
NAND_LLD_Enable_Disable_Interrupts(denali, false);
denali_set_intr_modes(denali, false);
free_irq(irqnum, denali);
}
......@@ -1797,7 +1797,7 @@ static void denali_ecc_hwctl(struct mtd_info *mtd, int mode)
static void denali_hw_init(struct denali_nand_info *denali)
{
denali_irq_init(denali);
NAND_Flash_Reset(denali);
denali_nand_reset(denali);
denali_write32(0x0F, denali->flash_reg + RB_PIN_ENABLED);
denali_write32(CHIP_EN_DONT_CARE__FLAG,
denali->flash_reg + CHIP_ENABLE_DONT_CARE);
......@@ -1993,11 +1993,11 @@ static int denali_pci_probe(struct pci_dev *dev, const struct pci_device_id *id)
}
/* now that our ISR is registered, we can enable interrupts */
NAND_LLD_Enable_Disable_Interrupts(denali, true);
denali_set_intr_modes(denali, true);
pci_set_drvdata(dev, denali);
NAND_Read_Device_ID(denali);
denali_nand_timing_set(denali);
/* MTD supported page sizes vary by kernel. We validate our
* kernel supports the device here.
......
......@@ -804,9 +804,4 @@ struct denali_nand_info {
int idx;
};
static uint16_t NAND_Flash_Reset(struct denali_nand_info *denali);
static uint16_t NAND_Read_Device_ID(struct denali_nand_info *denali);
static void NAND_LLD_Enable_Disable_Interrupts(struct denali_nand_info *denali,
uint16_t INT_ENABLE);
#endif /*_LLD_NAND_*/
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