diff options
Diffstat (limited to 'drivers/net/ixgb/ixgb_ee.c')
-rw-r--r-- | drivers/net/ixgb/ixgb_ee.c | 124 |
1 files changed, 62 insertions, 62 deletions
diff --git a/drivers/net/ixgb/ixgb_ee.c b/drivers/net/ixgb/ixgb_ee.c index e8eb0fd6c576..2f7ed52c7502 100644 --- a/drivers/net/ixgb/ixgb_ee.c +++ b/drivers/net/ixgb/ixgb_ee.c @@ -29,14 +29,14 @@ #include "ixgb_hw.h" #include "ixgb_ee.h" /* Local prototypes */ -static uint16_t ixgb_shift_in_bits(struct ixgb_hw *hw); +static u16 ixgb_shift_in_bits(struct ixgb_hw *hw); static void ixgb_shift_out_bits(struct ixgb_hw *hw, - uint16_t data, - uint16_t count); + u16 data, + u16 count); static void ixgb_standby_eeprom(struct ixgb_hw *hw); -static boolean_t ixgb_wait_eeprom_command(struct ixgb_hw *hw); +static bool ixgb_wait_eeprom_command(struct ixgb_hw *hw); static void ixgb_cleanup_eeprom(struct ixgb_hw *hw); @@ -48,7 +48,7 @@ static void ixgb_cleanup_eeprom(struct ixgb_hw *hw); *****************************************************************************/ static void ixgb_raise_clock(struct ixgb_hw *hw, - uint32_t *eecd_reg) + u32 *eecd_reg) { /* Raise the clock input to the EEPROM (by setting the SK bit), and then * wait 50 microseconds. @@ -67,7 +67,7 @@ ixgb_raise_clock(struct ixgb_hw *hw, *****************************************************************************/ static void ixgb_lower_clock(struct ixgb_hw *hw, - uint32_t *eecd_reg) + u32 *eecd_reg) { /* Lower the clock input to the EEPROM (by clearing the SK bit), and then * wait 50 microseconds. @@ -87,11 +87,11 @@ ixgb_lower_clock(struct ixgb_hw *hw, *****************************************************************************/ static void ixgb_shift_out_bits(struct ixgb_hw *hw, - uint16_t data, - uint16_t count) + u16 data, + u16 count) { - uint32_t eecd_reg; - uint32_t mask; + u32 eecd_reg; + u32 mask; /* We need to shift "count" bits out to the EEPROM. So, value in the * "data" parameter will be shifted out to the EEPROM one bit at a time. @@ -133,12 +133,12 @@ ixgb_shift_out_bits(struct ixgb_hw *hw, * * hw - Struct containing variables accessed by shared code *****************************************************************************/ -static uint16_t +static u16 ixgb_shift_in_bits(struct ixgb_hw *hw) { - uint32_t eecd_reg; - uint32_t i; - uint16_t data; + u32 eecd_reg; + u32 i; + u16 data; /* In order to read a register from the EEPROM, we need to shift 16 bits * in from the EEPROM. Bits are "shifted in" by raising the clock input to @@ -179,7 +179,7 @@ ixgb_shift_in_bits(struct ixgb_hw *hw) static void ixgb_setup_eeprom(struct ixgb_hw *hw) { - uint32_t eecd_reg; + u32 eecd_reg; eecd_reg = IXGB_READ_REG(hw, EECD); @@ -201,7 +201,7 @@ ixgb_setup_eeprom(struct ixgb_hw *hw) static void ixgb_standby_eeprom(struct ixgb_hw *hw) { - uint32_t eecd_reg; + u32 eecd_reg; eecd_reg = IXGB_READ_REG(hw, EECD); @@ -235,7 +235,7 @@ ixgb_standby_eeprom(struct ixgb_hw *hw) static void ixgb_clock_eeprom(struct ixgb_hw *hw) { - uint32_t eecd_reg; + u32 eecd_reg; eecd_reg = IXGB_READ_REG(hw, EECD); @@ -259,7 +259,7 @@ ixgb_clock_eeprom(struct ixgb_hw *hw) static void ixgb_cleanup_eeprom(struct ixgb_hw *hw) { - uint32_t eecd_reg; + u32 eecd_reg; eecd_reg = IXGB_READ_REG(hw, EECD); @@ -279,14 +279,14 @@ ixgb_cleanup_eeprom(struct ixgb_hw *hw) * The command is done when the EEPROM's data out pin goes high. * * Returns: - * TRUE: EEPROM data pin is high before timeout. - * FALSE: Time expired. + * true: EEPROM data pin is high before timeout. + * false: Time expired. *****************************************************************************/ -static boolean_t +static bool ixgb_wait_eeprom_command(struct ixgb_hw *hw) { - uint32_t eecd_reg; - uint32_t i; + u32 eecd_reg; + u32 i; /* Toggle the CS line. This in effect tells to EEPROM to actually execute * the command in question. @@ -301,12 +301,12 @@ ixgb_wait_eeprom_command(struct ixgb_hw *hw) eecd_reg = IXGB_READ_REG(hw, EECD); if(eecd_reg & IXGB_EECD_DO) - return (TRUE); + return (true); udelay(50); } ASSERT(0); - return (FALSE); + return (false); } /****************************************************************************** @@ -319,22 +319,22 @@ ixgb_wait_eeprom_command(struct ixgb_hw *hw) * valid. * * Returns: - * TRUE: Checksum is valid - * FALSE: Checksum is not valid. + * true: Checksum is valid + * false: Checksum is not valid. *****************************************************************************/ -boolean_t +bool ixgb_validate_eeprom_checksum(struct ixgb_hw *hw) { - uint16_t checksum = 0; - uint16_t i; + u16 checksum = 0; + u16 i; for(i = 0; i < (EEPROM_CHECKSUM_REG + 1); i++) checksum += ixgb_read_eeprom(hw, i); - if(checksum == (uint16_t) EEPROM_SUM) - return (TRUE); + if(checksum == (u16) EEPROM_SUM) + return (true); else - return (FALSE); + return (false); } /****************************************************************************** @@ -348,13 +348,13 @@ ixgb_validate_eeprom_checksum(struct ixgb_hw *hw) void ixgb_update_eeprom_checksum(struct ixgb_hw *hw) { - uint16_t checksum = 0; - uint16_t i; + u16 checksum = 0; + u16 i; for(i = 0; i < EEPROM_CHECKSUM_REG; i++) checksum += ixgb_read_eeprom(hw, i); - checksum = (uint16_t) EEPROM_SUM - checksum; + checksum = (u16) EEPROM_SUM - checksum; ixgb_write_eeprom(hw, EEPROM_CHECKSUM_REG, checksum); return; @@ -372,7 +372,7 @@ ixgb_update_eeprom_checksum(struct ixgb_hw *hw) * *****************************************************************************/ void -ixgb_write_eeprom(struct ixgb_hw *hw, uint16_t offset, uint16_t data) +ixgb_write_eeprom(struct ixgb_hw *hw, u16 offset, u16 data) { struct ixgb_ee_map_type *ee_map = (struct ixgb_ee_map_type *)hw->eeprom; @@ -425,11 +425,11 @@ ixgb_write_eeprom(struct ixgb_hw *hw, uint16_t offset, uint16_t data) * Returns: * The 16-bit value read from the eeprom *****************************************************************************/ -uint16_t +u16 ixgb_read_eeprom(struct ixgb_hw *hw, - uint16_t offset) + u16 offset) { - uint16_t data; + u16 data; /* Prepare the EEPROM for reading */ ixgb_setup_eeprom(hw); @@ -457,14 +457,14 @@ ixgb_read_eeprom(struct ixgb_hw *hw, * hw - Struct containing variables accessed by shared code * * Returns: - * TRUE: if eeprom read is successful - * FALSE: otherwise. + * true: if eeprom read is successful + * false: otherwise. *****************************************************************************/ -boolean_t +bool ixgb_get_eeprom_data(struct ixgb_hw *hw) { - uint16_t i; - uint16_t checksum = 0; + u16 i; + u16 checksum = 0; struct ixgb_ee_map_type *ee_map; DEBUGFUNC("ixgb_get_eeprom_data"); @@ -473,27 +473,27 @@ ixgb_get_eeprom_data(struct ixgb_hw *hw) DEBUGOUT("ixgb_ee: Reading eeprom data\n"); for(i = 0; i < IXGB_EEPROM_SIZE ; i++) { - uint16_t ee_data; + u16 ee_data; ee_data = ixgb_read_eeprom(hw, i); checksum += ee_data; hw->eeprom[i] = cpu_to_le16(ee_data); } - if (checksum != (uint16_t) EEPROM_SUM) { + if (checksum != (u16) EEPROM_SUM) { DEBUGOUT("ixgb_ee: Checksum invalid.\n"); /* clear the init_ctrl_reg_1 to signify that the cache is * invalidated */ ee_map->init_ctrl_reg_1 = cpu_to_le16(EEPROM_ICW1_SIGNATURE_CLEAR); - return (FALSE); + return (false); } if ((ee_map->init_ctrl_reg_1 & cpu_to_le16(EEPROM_ICW1_SIGNATURE_MASK)) != cpu_to_le16(EEPROM_ICW1_SIGNATURE_VALID)) { DEBUGOUT("ixgb_ee: Signature invalid.\n"); - return(FALSE); + return(false); } - return(TRUE); + return(true); } /****************************************************************************** @@ -503,17 +503,17 @@ ixgb_get_eeprom_data(struct ixgb_hw *hw) * hw - Struct containing variables accessed by shared code * * Returns: - * TRUE: eeprom signature was good and the eeprom read was successful - * FALSE: otherwise. + * true: eeprom signature was good and the eeprom read was successful + * false: otherwise. ******************************************************************************/ -static boolean_t +static bool ixgb_check_and_get_eeprom_data (struct ixgb_hw* hw) { struct ixgb_ee_map_type *ee_map = (struct ixgb_ee_map_type *)hw->eeprom; if ((ee_map->init_ctrl_reg_1 & cpu_to_le16(EEPROM_ICW1_SIGNATURE_MASK)) == cpu_to_le16(EEPROM_ICW1_SIGNATURE_VALID)) { - return (TRUE); + return (true); } else { return ixgb_get_eeprom_data(hw); } @@ -529,11 +529,11 @@ ixgb_check_and_get_eeprom_data (struct ixgb_hw* hw) * Word at indexed offset in eeprom, if valid, 0 otherwise. ******************************************************************************/ __le16 -ixgb_get_eeprom_word(struct ixgb_hw *hw, uint16_t index) +ixgb_get_eeprom_word(struct ixgb_hw *hw, u16 index) { if ((index < IXGB_EEPROM_SIZE) && - (ixgb_check_and_get_eeprom_data(hw) == TRUE)) { + (ixgb_check_and_get_eeprom_data(hw) == true)) { return(hw->eeprom[index]); } @@ -550,14 +550,14 @@ ixgb_get_eeprom_word(struct ixgb_hw *hw, uint16_t index) ******************************************************************************/ void ixgb_get_ee_mac_addr(struct ixgb_hw *hw, - uint8_t *mac_addr) + u8 *mac_addr) { int i; struct ixgb_ee_map_type *ee_map = (struct ixgb_ee_map_type *)hw->eeprom; DEBUGFUNC("ixgb_get_ee_mac_addr"); - if (ixgb_check_and_get_eeprom_data(hw) == TRUE) { + if (ixgb_check_and_get_eeprom_data(hw) == true) { for (i = 0; i < IXGB_ETH_LENGTH_OF_ADDRESS; i++) { mac_addr[i] = ee_map->mac_addr[i]; DEBUGOUT2("mac(%d) = %.2X\n", i, mac_addr[i]); @@ -574,10 +574,10 @@ ixgb_get_ee_mac_addr(struct ixgb_hw *hw, * Returns: * PBA number if EEPROM contents are valid, 0 otherwise ******************************************************************************/ -uint32_t +u32 ixgb_get_ee_pba_number(struct ixgb_hw *hw) { - if(ixgb_check_and_get_eeprom_data(hw) == TRUE) + if (ixgb_check_and_get_eeprom_data(hw) == true) return (le16_to_cpu(hw->eeprom[EEPROM_PBA_1_2_REG]) | (le16_to_cpu(hw->eeprom[EEPROM_PBA_3_4_REG])<<16)); @@ -593,12 +593,12 @@ ixgb_get_ee_pba_number(struct ixgb_hw *hw) * Returns: * Device Id if EEPROM contents are valid, 0 otherwise ******************************************************************************/ -uint16_t +u16 ixgb_get_ee_device_id(struct ixgb_hw *hw) { struct ixgb_ee_map_type *ee_map = (struct ixgb_ee_map_type *)hw->eeprom; - if(ixgb_check_and_get_eeprom_data(hw) == TRUE) + if (ixgb_check_and_get_eeprom_data(hw) == true) return (le16_to_cpu(ee_map->device_id)); return (0); |