#endif
#elif defined(CONFIG_S5PC1XX)
#if defined(CONFIG_SERIAL0)
- return &s5pc1xx_serial0_device;
+ return &s5p_serial0_device;
#elif defined(CONFIG_SERIAL1)
- return &s5pc1xx_serial1_device;
+ return &s5p_serial1_device;
#elif defined(CONFIG_SERIAL2)
- return &s5pc1xx_serial2_device;
+ return &s5p_serial2_device;
#elif defined(CONFIG_SERIAL3)
- return &s5pc1xx_serial3_device;
+ return &s5p_serial3_device;
#else
#error "CONFIG_SERIAL? missing."
#endif
serial_register(&s3c24xx_serial2_device);
#endif
#if defined(CONFIG_S5PC1XX)
- serial_register(&s5pc1xx_serial0_device);
- serial_register(&s5pc1xx_serial1_device);
- serial_register(&s5pc1xx_serial2_device);
- serial_register(&s5pc1xx_serial3_device);
+ serial_register(&s5p_serial0_device);
+ serial_register(&s5p_serial1_device);
+ serial_register(&s5p_serial2_device);
+ serial_register(&s5p_serial3_device);
#endif
#if defined(CONFIG_MPC512X)
#if defined(CONFIG_SYS_PSC1)
#include <asm/arch/clk.h>
#include <serial.h>
-static inline struct s5pc1xx_uart *s5pc1xx_get_base_uart(int dev_index)
+static inline struct s5p_uart *s5p_get_base_uart(int dev_index)
{
- u32 offset = dev_index * sizeof(struct s5pc1xx_uart);
+ u32 offset = dev_index * sizeof(struct s5p_uart);
if (cpu_is_s5pc100())
- return (struct s5pc1xx_uart *)(S5PC100_UART_BASE + offset);
+ return (struct s5p_uart *)(S5PC100_UART_BASE + offset);
else
- return (struct s5pc1xx_uart *)(S5PC110_UART_BASE + offset);
+ return (struct s5p_uart *)(S5PC110_UART_BASE + offset);
}
/*
- * The coefficient, used to calculate the baudrate on S5PC1XX UARTs is
+ * The coefficient, used to calculate the baudrate on S5P UARTs is
* calculated as
* C = UBRDIV * 16 + number_of_set_bits_in_UDIVSLOT
* however, section 31.6.11 of the datasheet doesn't recomment using 1 for 1,
void serial_setbrg_dev(const int dev_index)
{
DECLARE_GLOBAL_DATA_PTR;
- struct s5pc1xx_uart *const uart = s5pc1xx_get_base_uart(dev_index);
+ struct s5p_uart *const uart = s5p_get_base_uart(dev_index);
u32 pclk = get_pclk();
u32 baudrate = gd->baudrate;
u32 val;
*/
int serial_init_dev(const int dev_index)
{
- struct s5pc1xx_uart *const uart = s5pc1xx_get_base_uart(dev_index);
+ struct s5p_uart *const uart = s5p_get_base_uart(dev_index);
/* reset and enable FIFOs, set triggers to the maximum */
writel(0, &uart->ufcon);
static int serial_err_check(const int dev_index, int op)
{
- struct s5pc1xx_uart *const uart = s5pc1xx_get_base_uart(dev_index);
+ struct s5p_uart *const uart = s5p_get_base_uart(dev_index);
unsigned int mask;
/*
*/
int serial_getc_dev(const int dev_index)
{
- struct s5pc1xx_uart *const uart = s5pc1xx_get_base_uart(dev_index);
+ struct s5p_uart *const uart = s5p_get_base_uart(dev_index);
/* wait for character to arrive */
while (!(readl(&uart->utrstat) & 0x1)) {
*/
void serial_putc_dev(const char c, const int dev_index)
{
- struct s5pc1xx_uart *const uart = s5pc1xx_get_base_uart(dev_index);
+ struct s5p_uart *const uart = s5p_get_base_uart(dev_index);
/* wait for room in the tx FIFO */
while (!(readl(&uart->utrstat) & 0x2)) {
*/
int serial_tstc_dev(const int dev_index)
{
- struct s5pc1xx_uart *const uart = s5pc1xx_get_base_uart(dev_index);
+ struct s5p_uart *const uart = s5p_get_base_uart(dev_index);
return (int)(readl(&uart->utrstat) & 0x1);
}
s5p_serial##port##_puts, }
DECLARE_S5P_SERIAL_FUNCTIONS(0);
-struct serial_device s5pc1xx_serial0_device =
+struct serial_device s5p_serial0_device =
INIT_S5P_SERIAL_STRUCTURE(0, "s5pser0", "S5PUART0");
DECLARE_S5P_SERIAL_FUNCTIONS(1);
-struct serial_device s5pc1xx_serial1_device =
+struct serial_device s5p_serial1_device =
INIT_S5P_SERIAL_STRUCTURE(1, "s5pser1", "S5PUART1");
DECLARE_S5P_SERIAL_FUNCTIONS(2);
-struct serial_device s5pc1xx_serial2_device =
+struct serial_device s5p_serial2_device =
INIT_S5P_SERIAL_STRUCTURE(2, "s5pser2", "S5PUART2");
DECLARE_S5P_SERIAL_FUNCTIONS(3);
-struct serial_device s5pc1xx_serial3_device =
+struct serial_device s5p_serial3_device =
INIT_S5P_SERIAL_STRUCTURE(3, "s5pser3", "S5PUART3");