xref: /linux/arch/arm/mach-omap1/serial.c (revision e8a91c953fca683ef9a9335fb00d6eb3e49ac1ee)
1f577ffd7STony Lindgren /*
2f30c2269SUwe Zeisberger  * linux/arch/arm/mach-omap1/serial.c
3f577ffd7STony Lindgren  *
465d873caSMarek Vašut  * OMAP1 serial support.
5f577ffd7STony Lindgren  *
6f577ffd7STony Lindgren  * This program is free software; you can redistribute it and/or modify
7f577ffd7STony Lindgren  * it under the terms of the GNU General Public License version 2 as
8f577ffd7STony Lindgren  * published by the Free Software Foundation.
9f577ffd7STony Lindgren  */
10f577ffd7STony Lindgren 
11f577ffd7STony Lindgren #include <linux/module.h>
12f577ffd7STony Lindgren #include <linux/kernel.h>
13f577ffd7STony Lindgren #include <linux/init.h>
14d533c128SThomas Gleixner #include <linux/irq.h>
15f577ffd7STony Lindgren #include <linux/delay.h>
16f577ffd7STony Lindgren #include <linux/serial.h>
17f577ffd7STony Lindgren #include <linux/tty.h>
18f577ffd7STony Lindgren #include <linux/serial_8250.h>
19f577ffd7STony Lindgren #include <linux/serial_reg.h>
20f8ce2547SRussell King #include <linux/clk.h>
21f577ffd7STony Lindgren 
22f577ffd7STony Lindgren #include <asm/io.h>
23f577ffd7STony Lindgren #include <asm/mach-types.h>
24f577ffd7STony Lindgren 
25a09e64fbSRussell King #include <mach/board.h>
26a09e64fbSRussell King #include <mach/mux.h>
27a09e64fbSRussell King #include <mach/gpio.h>
28a09e64fbSRussell King #include <mach/fpga.h>
297c38cf02STony Lindgren #ifdef CONFIG_PM
30a09e64fbSRussell King #include <mach/pm.h>
317c38cf02STony Lindgren #endif
32f577ffd7STony Lindgren 
33120db2cbSTony Lindgren static struct clk * uart1_ck;
34120db2cbSTony Lindgren static struct clk * uart2_ck;
35120db2cbSTony Lindgren static struct clk * uart3_ck;
36f577ffd7STony Lindgren 
37f577ffd7STony Lindgren static inline unsigned int omap_serial_in(struct plat_serial8250_port *up,
38f577ffd7STony Lindgren 					  int offset)
39f577ffd7STony Lindgren {
40f577ffd7STony Lindgren 	offset <<= up->regshift;
41f577ffd7STony Lindgren 	return (unsigned int)__raw_readb(up->membase + offset);
42f577ffd7STony Lindgren }
43f577ffd7STony Lindgren 
44f577ffd7STony Lindgren static inline void omap_serial_outp(struct plat_serial8250_port *p, int offset,
45f577ffd7STony Lindgren 				    int value)
46f577ffd7STony Lindgren {
47f577ffd7STony Lindgren 	offset <<= p->regshift;
48f577ffd7STony Lindgren 	__raw_writeb(value, p->membase + offset);
49f577ffd7STony Lindgren }
50f577ffd7STony Lindgren 
51f577ffd7STony Lindgren /*
52f577ffd7STony Lindgren  * Internal UARTs need to be initialized for the 8250 autoconfig to work
53f577ffd7STony Lindgren  * properly. Note that the TX watermark initialization may not be needed
54f577ffd7STony Lindgren  * once the 8250.c watermark handling code is merged.
55f577ffd7STony Lindgren  */
56f577ffd7STony Lindgren static void __init omap_serial_reset(struct plat_serial8250_port *p)
57f577ffd7STony Lindgren {
58f577ffd7STony Lindgren 	omap_serial_outp(p, UART_OMAP_MDR1, 0x07);	/* disable UART */
59f577ffd7STony Lindgren 	omap_serial_outp(p, UART_OMAP_SCR, 0x08);	/* TX watermark */
60f577ffd7STony Lindgren 	omap_serial_outp(p, UART_OMAP_MDR1, 0x00);	/* enable UART */
61f577ffd7STony Lindgren 
6265d873caSMarek Vašut 	if (!cpu_is_omap15xx()) {
63f577ffd7STony Lindgren 		omap_serial_outp(p, UART_OMAP_SYSC, 0x01);
64f577ffd7STony Lindgren 		while (!(omap_serial_in(p, UART_OMAP_SYSC) & 0x01));
65f577ffd7STony Lindgren 	}
66f577ffd7STony Lindgren }
67f577ffd7STony Lindgren 
68f577ffd7STony Lindgren static struct plat_serial8250_port serial_platform_data[] = {
69f577ffd7STony Lindgren 	{
70*e8a91c95SRussell King 		.membase	= IO_ADDRESS(OMAP_UART1_BASE),
71*e8a91c95SRussell King 		.mapbase	= OMAP_UART1_BASE,
72f577ffd7STony Lindgren 		.irq		= INT_UART1,
73f577ffd7STony Lindgren 		.flags		= UPF_BOOT_AUTOCONF,
74f577ffd7STony Lindgren 		.iotype		= UPIO_MEM,
75f577ffd7STony Lindgren 		.regshift	= 2,
76f577ffd7STony Lindgren 		.uartclk	= OMAP16XX_BASE_BAUD * 16,
77f577ffd7STony Lindgren 	},
78f577ffd7STony Lindgren 	{
79*e8a91c95SRussell King 		.membase	= IO_ADDRESS(OMAP_UART2_BASE),
80*e8a91c95SRussell King 		.mapbase	= OMAP_UART2_BASE,
81f577ffd7STony Lindgren 		.irq		= INT_UART2,
82f577ffd7STony Lindgren 		.flags		= UPF_BOOT_AUTOCONF,
83f577ffd7STony Lindgren 		.iotype		= UPIO_MEM,
84f577ffd7STony Lindgren 		.regshift	= 2,
85f577ffd7STony Lindgren 		.uartclk	= OMAP16XX_BASE_BAUD * 16,
86f577ffd7STony Lindgren 	},
87f577ffd7STony Lindgren 	{
88*e8a91c95SRussell King 		.membase	= IO_ADDRESS(OMAP_UART3_BASE),
89*e8a91c95SRussell King 		.mapbase	= OMAP_UART3_BASE,
90f577ffd7STony Lindgren 		.irq		= INT_UART3,
91f577ffd7STony Lindgren 		.flags		= UPF_BOOT_AUTOCONF,
92f577ffd7STony Lindgren 		.iotype		= UPIO_MEM,
93f577ffd7STony Lindgren 		.regshift	= 2,
94f577ffd7STony Lindgren 		.uartclk	= OMAP16XX_BASE_BAUD * 16,
95f577ffd7STony Lindgren 	},
96f577ffd7STony Lindgren 	{ },
97f577ffd7STony Lindgren };
98f577ffd7STony Lindgren 
99f577ffd7STony Lindgren static struct platform_device serial_device = {
100f577ffd7STony Lindgren 	.name			= "serial8250",
1016df29debSRussell King 	.id			= PLAT8250_DEV_PLATFORM,
102f577ffd7STony Lindgren 	.dev			= {
103f577ffd7STony Lindgren 		.platform_data	= serial_platform_data,
104f577ffd7STony Lindgren 	},
105f577ffd7STony Lindgren };
106f577ffd7STony Lindgren 
107f577ffd7STony Lindgren /*
108f577ffd7STony Lindgren  * Note that on Innovator-1510 UART2 pins conflict with USB2.
109f577ffd7STony Lindgren  * By default UART2 does not work on Innovator-1510 if you have
110f577ffd7STony Lindgren  * USB OHCI enabled. To use UART2, you must disable USB2 first.
111f577ffd7STony Lindgren  */
1123179a019STony Lindgren void __init omap_serial_init(void)
113f577ffd7STony Lindgren {
114f577ffd7STony Lindgren 	int i;
1153179a019STony Lindgren 	const struct omap_uart_config *info;
116f577ffd7STony Lindgren 
117f577ffd7STony Lindgren 	if (cpu_is_omap730()) {
118f577ffd7STony Lindgren 		serial_platform_data[0].regshift = 0;
119f577ffd7STony Lindgren 		serial_platform_data[1].regshift = 0;
120f577ffd7STony Lindgren 		serial_platform_data[0].irq = INT_730_UART_MODEM_1;
121f577ffd7STony Lindgren 		serial_platform_data[1].irq = INT_730_UART_MODEM_IRDA_2;
122f577ffd7STony Lindgren 	}
123f577ffd7STony Lindgren 
12465d873caSMarek Vašut 	if (cpu_is_omap15xx()) {
125f577ffd7STony Lindgren 		serial_platform_data[0].uartclk = OMAP1510_BASE_BAUD * 16;
126f577ffd7STony Lindgren 		serial_platform_data[1].uartclk = OMAP1510_BASE_BAUD * 16;
127f577ffd7STony Lindgren 		serial_platform_data[2].uartclk = OMAP1510_BASE_BAUD * 16;
128f577ffd7STony Lindgren 	}
129f577ffd7STony Lindgren 
1303179a019STony Lindgren 	info = omap_get_config(OMAP_TAG_UART, struct omap_uart_config);
1313179a019STony Lindgren 	if (info == NULL)
1323179a019STony Lindgren 		return;
1333179a019STony Lindgren 
134f577ffd7STony Lindgren 	for (i = 0; i < OMAP_MAX_NR_PORTS; i++) {
135f577ffd7STony Lindgren 		unsigned char reg;
136f577ffd7STony Lindgren 
1373179a019STony Lindgren 		if (!((1 << i) & info->enabled_uarts)) {
138f577ffd7STony Lindgren 			serial_platform_data[i].membase = NULL;
139f577ffd7STony Lindgren 			serial_platform_data[i].mapbase = 0;
140f577ffd7STony Lindgren 			continue;
141f577ffd7STony Lindgren 		}
142f577ffd7STony Lindgren 
143f577ffd7STony Lindgren 		switch (i) {
144f577ffd7STony Lindgren 		case 0:
145f577ffd7STony Lindgren 			uart1_ck = clk_get(NULL, "uart1_ck");
146f577ffd7STony Lindgren 			if (IS_ERR(uart1_ck))
147f577ffd7STony Lindgren 				printk("Could not get uart1_ck\n");
148f577ffd7STony Lindgren 			else {
14930ff720bSTony Lindgren 				clk_enable(uart1_ck);
15065d873caSMarek Vašut 				if (cpu_is_omap15xx())
151f577ffd7STony Lindgren 					clk_set_rate(uart1_ck, 12000000);
152f577ffd7STony Lindgren 			}
15365d873caSMarek Vašut 			if (cpu_is_omap15xx()) {
154f577ffd7STony Lindgren 				omap_cfg_reg(UART1_TX);
155f577ffd7STony Lindgren 				omap_cfg_reg(UART1_RTS);
156f577ffd7STony Lindgren 				if (machine_is_omap_innovator()) {
157f577ffd7STony Lindgren 					reg = fpga_read(OMAP1510_FPGA_POWER);
158f577ffd7STony Lindgren 					reg |= OMAP1510_FPGA_PCR_COM1_EN;
159f577ffd7STony Lindgren 					fpga_write(reg, OMAP1510_FPGA_POWER);
160f577ffd7STony Lindgren 					udelay(10);
161f577ffd7STony Lindgren 				}
162f577ffd7STony Lindgren 			}
163f577ffd7STony Lindgren 			break;
164f577ffd7STony Lindgren 		case 1:
165f577ffd7STony Lindgren 			uart2_ck = clk_get(NULL, "uart2_ck");
166f577ffd7STony Lindgren 			if (IS_ERR(uart2_ck))
167f577ffd7STony Lindgren 				printk("Could not get uart2_ck\n");
168f577ffd7STony Lindgren 			else {
16930ff720bSTony Lindgren 				clk_enable(uart2_ck);
17065d873caSMarek Vašut 				if (cpu_is_omap15xx())
171f577ffd7STony Lindgren 					clk_set_rate(uart2_ck, 12000000);
172f577ffd7STony Lindgren 				else
173f577ffd7STony Lindgren 					clk_set_rate(uart2_ck, 48000000);
174f577ffd7STony Lindgren 			}
17565d873caSMarek Vašut 			if (cpu_is_omap15xx()) {
176f577ffd7STony Lindgren 				omap_cfg_reg(UART2_TX);
177f577ffd7STony Lindgren 				omap_cfg_reg(UART2_RTS);
178f577ffd7STony Lindgren 				if (machine_is_omap_innovator()) {
179f577ffd7STony Lindgren 					reg = fpga_read(OMAP1510_FPGA_POWER);
180f577ffd7STony Lindgren 					reg |= OMAP1510_FPGA_PCR_COM2_EN;
181f577ffd7STony Lindgren 					fpga_write(reg, OMAP1510_FPGA_POWER);
182f577ffd7STony Lindgren 					udelay(10);
183f577ffd7STony Lindgren 				}
184f577ffd7STony Lindgren 			}
185f577ffd7STony Lindgren 			break;
186f577ffd7STony Lindgren 		case 2:
187f577ffd7STony Lindgren 			uart3_ck = clk_get(NULL, "uart3_ck");
188f577ffd7STony Lindgren 			if (IS_ERR(uart3_ck))
189f577ffd7STony Lindgren 				printk("Could not get uart3_ck\n");
190f577ffd7STony Lindgren 			else {
19130ff720bSTony Lindgren 				clk_enable(uart3_ck);
19265d873caSMarek Vašut 				if (cpu_is_omap15xx())
193f577ffd7STony Lindgren 					clk_set_rate(uart3_ck, 12000000);
194f577ffd7STony Lindgren 			}
19565d873caSMarek Vašut 			if (cpu_is_omap15xx()) {
196f577ffd7STony Lindgren 				omap_cfg_reg(UART3_TX);
197f577ffd7STony Lindgren 				omap_cfg_reg(UART3_RX);
198f577ffd7STony Lindgren 			}
199f577ffd7STony Lindgren 			break;
200f577ffd7STony Lindgren 		}
201f577ffd7STony Lindgren 		omap_serial_reset(&serial_platform_data[i]);
202f577ffd7STony Lindgren 	}
203f577ffd7STony Lindgren }
204f577ffd7STony Lindgren 
2057c38cf02STony Lindgren #ifdef CONFIG_OMAP_SERIAL_WAKE
2067c38cf02STony Lindgren 
2070cd61b68SLinus Torvalds static irqreturn_t omap_serial_wake_interrupt(int irq, void *dev_id)
2087c38cf02STony Lindgren {
2097c38cf02STony Lindgren 	/* Need to do something with serial port right after wake-up? */
2107c38cf02STony Lindgren 	return IRQ_HANDLED;
2117c38cf02STony Lindgren }
2127c38cf02STony Lindgren 
2137c38cf02STony Lindgren /*
2147c38cf02STony Lindgren  * Reroutes serial RX lines to GPIO lines for the duration of
2157c38cf02STony Lindgren  * sleep to allow waking up the device from serial port even
2167c38cf02STony Lindgren  * in deep sleep.
2177c38cf02STony Lindgren  */
2187c38cf02STony Lindgren void omap_serial_wake_trigger(int enable)
2197c38cf02STony Lindgren {
2207c38cf02STony Lindgren 	if (!cpu_is_omap16xx())
2217c38cf02STony Lindgren 		return;
2227c38cf02STony Lindgren 
2237c38cf02STony Lindgren 	if (uart1_ck != NULL) {
2247c38cf02STony Lindgren 		if (enable)
2257c38cf02STony Lindgren 			omap_cfg_reg(V14_16XX_GPIO37);
2267c38cf02STony Lindgren 		else
2277c38cf02STony Lindgren 			omap_cfg_reg(V14_16XX_UART1_RX);
2287c38cf02STony Lindgren 	}
2297c38cf02STony Lindgren 	if (uart2_ck != NULL) {
2307c38cf02STony Lindgren 		if (enable)
2317c38cf02STony Lindgren 			omap_cfg_reg(R9_16XX_GPIO18);
2327c38cf02STony Lindgren 		else
2337c38cf02STony Lindgren 			omap_cfg_reg(R9_16XX_UART2_RX);
2347c38cf02STony Lindgren 	}
2357c38cf02STony Lindgren 	if (uart3_ck != NULL) {
2367c38cf02STony Lindgren 		if (enable)
2377c38cf02STony Lindgren 			omap_cfg_reg(L14_16XX_GPIO49);
2387c38cf02STony Lindgren 		else
2397c38cf02STony Lindgren 			omap_cfg_reg(L14_16XX_UART3_RX);
2407c38cf02STony Lindgren 	}
2417c38cf02STony Lindgren }
2427c38cf02STony Lindgren 
2437c38cf02STony Lindgren static void __init omap_serial_set_port_wakeup(int gpio_nr)
2447c38cf02STony Lindgren {
2457c38cf02STony Lindgren 	int ret;
2467c38cf02STony Lindgren 
2477c38cf02STony Lindgren 	ret = omap_request_gpio(gpio_nr);
2487c38cf02STony Lindgren 	if (ret < 0) {
2497c38cf02STony Lindgren 		printk(KERN_ERR "Could not request UART wake GPIO: %i\n",
2507c38cf02STony Lindgren 		       gpio_nr);
2517c38cf02STony Lindgren 		return;
2527c38cf02STony Lindgren 	}
2537c38cf02STony Lindgren 	omap_set_gpio_direction(gpio_nr, 1);
2547c38cf02STony Lindgren 	ret = request_irq(OMAP_GPIO_IRQ(gpio_nr), &omap_serial_wake_interrupt,
25552e405eaSThomas Gleixner 			  IRQF_TRIGGER_RISING, "serial wakeup", NULL);
2567c38cf02STony Lindgren 	if (ret) {
2577c38cf02STony Lindgren 		omap_free_gpio(gpio_nr);
2587c38cf02STony Lindgren 		printk(KERN_ERR "No interrupt for UART wake GPIO: %i\n",
2597c38cf02STony Lindgren 		       gpio_nr);
2607c38cf02STony Lindgren 		return;
2617c38cf02STony Lindgren 	}
2627c38cf02STony Lindgren 	enable_irq_wake(OMAP_GPIO_IRQ(gpio_nr));
2637c38cf02STony Lindgren }
2647c38cf02STony Lindgren 
2657c38cf02STony Lindgren static int __init omap_serial_wakeup_init(void)
2667c38cf02STony Lindgren {
2677c38cf02STony Lindgren 	if (!cpu_is_omap16xx())
2687c38cf02STony Lindgren 		return 0;
2697c38cf02STony Lindgren 
2707c38cf02STony Lindgren 	if (uart1_ck != NULL)
2717c38cf02STony Lindgren 		omap_serial_set_port_wakeup(37);
2727c38cf02STony Lindgren 	if (uart2_ck != NULL)
2737c38cf02STony Lindgren 		omap_serial_set_port_wakeup(18);
2747c38cf02STony Lindgren 	if (uart3_ck != NULL)
2757c38cf02STony Lindgren 		omap_serial_set_port_wakeup(49);
2767c38cf02STony Lindgren 
2777c38cf02STony Lindgren 	return 0;
2787c38cf02STony Lindgren }
2797c38cf02STony Lindgren late_initcall(omap_serial_wakeup_init);
2807c38cf02STony Lindgren 
2817c38cf02STony Lindgren #endif	/* CONFIG_OMAP_SERIAL_WAKE */
2827c38cf02STony Lindgren 
283f577ffd7STony Lindgren static int __init omap_init(void)
284f577ffd7STony Lindgren {
285f577ffd7STony Lindgren 	return platform_device_register(&serial_device);
286f577ffd7STony Lindgren }
287f577ffd7STony Lindgren arch_initcall(omap_init);
288