2 * (C) Copyright 2009 SAMSUNG Electronics
3 * Minkyu Kang <mk7.kang@samsung.com>
4 * Heungjun Kim <riverful.kim@samsung.com>
6 * based on drivers/serial/s3c64xx.c
8 * This program is free software; you can redistribute it and/or modify
9 * it under the terms of the GNU General Public License as published by
10 * the Free Software Foundation; either version 2 of the License, or
11 * (at your option) any later version.
13 * This program is distributed in the hope that it will be useful,
14 * but WITHOUT ANY WARRANTY; without even the implied warranty of
15 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 * GNU General Public License for more details.
18 * You should have received a copy of the GNU General Public License
19 * along with this program; if not, write to the Free Software
20 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
26 #include <asm/arch/uart.h>
27 #include <asm/arch/clk.h>
30 DECLARE_GLOBAL_DATA_PTR;
32 static inline struct s5p_uart *s5p_get_base_uart(int dev_index)
34 u32 offset = dev_index * sizeof(struct s5p_uart);
35 return (struct s5p_uart *)(samsung_get_base_uart() + offset);
39 * The coefficient, used to calculate the baudrate on S5P UARTs is
41 * C = UBRDIV * 16 + number_of_set_bits_in_UDIVSLOT
42 * however, section 31.6.11 of the datasheet doesn't recomment using 1 for 1,
43 * 3 for 2, ... (2^n - 1) for n, instead, they suggest using these constants:
45 static const int udivslot[] = {
64 void serial_setbrg_dev(const int dev_index)
66 struct s5p_uart *const uart = s5p_get_base_uart(dev_index);
67 u32 uclk = get_uart_clk(dev_index);
68 u32 baudrate = gd->baudrate;
71 val = uclk / baudrate;
73 writel(val / 16 - 1, &uart->ubrdiv);
75 if (s5p_uart_divslot())
76 writew(udivslot[val % 16], &uart->rest.slot);
78 writeb(val % 16, &uart->rest.value);
82 * Initialise the serial port with the given baudrate. The settings
83 * are always 8 data bits, no parity, 1 stop bit, no start bits.
85 int serial_init_dev(const int dev_index)
87 struct s5p_uart *const uart = s5p_get_base_uart(dev_index);
89 /* reset and enable FIFOs, set triggers to the maximum */
90 writel(0, &uart->ufcon);
91 writel(0, &uart->umcon);
93 writel(0x3, &uart->ulcon);
94 /* No interrupts, no DMA, pure polling */
95 writel(0x245, &uart->ucon);
97 serial_setbrg_dev(dev_index);
102 static int serial_err_check(const int dev_index, int op)
104 struct s5p_uart *const uart = s5p_get_base_uart(dev_index);
110 * Frame Err [2] : receive operation
111 * Parity Err [1] : receive operation
112 * Overrun Err [0] : receive operation
119 return readl(&uart->uerstat) & mask;
123 * Read a single byte from the serial port. Returns 1 on success, 0
124 * otherwise. When the function is succesfull, the character read is
125 * written into its argument c.
127 int serial_getc_dev(const int dev_index)
129 struct s5p_uart *const uart = s5p_get_base_uart(dev_index);
131 /* wait for character to arrive */
132 while (!(readl(&uart->utrstat) & 0x1)) {
133 if (serial_err_check(dev_index, 0))
137 return (int)(readb(&uart->urxh) & 0xff);
141 * Output a single byte to the serial port.
143 void serial_putc_dev(const char c, const int dev_index)
145 struct s5p_uart *const uart = s5p_get_base_uart(dev_index);
147 /* wait for room in the tx FIFO */
148 while (!(readl(&uart->utrstat) & 0x2)) {
149 if (serial_err_check(dev_index, 1))
153 writeb(c, &uart->utxh);
155 /* If \n, also do \r */
161 * Test whether a character is in the RX buffer
163 int serial_tstc_dev(const int dev_index)
165 struct s5p_uart *const uart = s5p_get_base_uart(dev_index);
167 return (int)(readl(&uart->utrstat) & 0x1);
170 void serial_puts_dev(const char *s, const int dev_index)
173 serial_putc_dev(*s++, dev_index);
176 /* Multi serial device functions */
177 #define DECLARE_S5P_SERIAL_FUNCTIONS(port) \
178 int s5p_serial##port##_init(void) { return serial_init_dev(port); } \
179 void s5p_serial##port##_setbrg(void) { serial_setbrg_dev(port); } \
180 int s5p_serial##port##_getc(void) { return serial_getc_dev(port); } \
181 int s5p_serial##port##_tstc(void) { return serial_tstc_dev(port); } \
182 void s5p_serial##port##_putc(const char c) { serial_putc_dev(c, port); } \
183 void s5p_serial##port##_puts(const char *s) { serial_puts_dev(s, port); }
185 #define INIT_S5P_SERIAL_STRUCTURE(port, name, bus) { \
188 s5p_serial##port##_init, \
190 s5p_serial##port##_setbrg, \
191 s5p_serial##port##_getc, \
192 s5p_serial##port##_tstc, \
193 s5p_serial##port##_putc, \
194 s5p_serial##port##_puts, }
196 DECLARE_S5P_SERIAL_FUNCTIONS(0);
197 struct serial_device s5p_serial0_device =
198 INIT_S5P_SERIAL_STRUCTURE(0, "s5pser0", "S5PUART0");
199 DECLARE_S5P_SERIAL_FUNCTIONS(1);
200 struct serial_device s5p_serial1_device =
201 INIT_S5P_SERIAL_STRUCTURE(1, "s5pser1", "S5PUART1");
202 DECLARE_S5P_SERIAL_FUNCTIONS(2);
203 struct serial_device s5p_serial2_device =
204 INIT_S5P_SERIAL_STRUCTURE(2, "s5pser2", "S5PUART2");
205 DECLARE_S5P_SERIAL_FUNCTIONS(3);
206 struct serial_device s5p_serial3_device =
207 INIT_S5P_SERIAL_STRUCTURE(3, "s5pser3", "S5PUART3");