2 * dm355evm_msp.c - driver for MSP430 firmware on DM355EVM board
4 * Copyright (C) 2008 David Brownell
6 * This program is free software; you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License as published by
8 * the Free Software Foundation; either version 2 of the License, or
9 * (at your option) any later version.
12 #include <linux/init.h>
13 #include <linux/mutex.h>
14 #include <linux/platform_device.h>
15 #include <linux/clk.h>
16 #include <linux/err.h>
17 #include <linux/gpio.h>
18 #include <linux/leds.h>
19 #include <linux/i2c.h>
20 #include <linux/i2c/dm355evm_msp.h>
24 * The DM355 is a DaVinci chip with video support but no C64+ DSP. Its
25 * EVM board has an MSP430 programmed with firmware for various board
26 * support functions. This driver exposes some of them directly, and
27 * supports other drivers (e.g. RTC, input) for more complex access.
29 * Because this firmware is entirely board-specific, this file embeds
30 * knowledge that would be passed as platform_data in a generic driver.
32 * This driver was tested with firmware revision A4.
35 #if defined(CONFIG_KEYBOARD_DM355EVM) \
36 || defined(CONFIG_KEYBOARD_DM355EVM_MODULE)
37 #define msp_has_keyboard() true
39 #define msp_has_keyboard() false
42 #if defined(CONFIG_LEDS_GPIO) || defined(CONFIG_LEDS_GPIO_MODULE)
43 #define msp_has_leds() true
45 #define msp_has_leds() false
48 #if defined(CONFIG_RTC_DRV_DM355EVM) || defined(CONFIG_RTC_DRV_DM355EVM_MODULE)
49 #define msp_has_rtc() true
51 #define msp_has_rtc() false
54 #if defined(CONFIG_VIDEO_TVP514X) || defined(CONFIG_VIDEO_TVP514X_MODULE)
55 #define msp_has_tvp() true
57 #define msp_has_tvp() false
61 /*----------------------------------------------------------------------*/
63 /* REVISIT for paranoia's sake, retry reads/writes on error */
65 static struct i2c_client
*msp430
;
68 * dm355evm_msp_write - Writes a register in dm355evm_msp
69 * @value: the value to be written
70 * @reg: register address
72 * Returns result of operation - 0 is success, else negative errno
74 int dm355evm_msp_write(u8 value
, u8 reg
)
76 return i2c_smbus_write_byte_data(msp430
, reg
, value
);
78 EXPORT_SYMBOL(dm355evm_msp_write
);
81 * dm355evm_msp_read - Reads a register from dm355evm_msp
82 * @reg: register address
84 * Returns result of operation - value, or negative errno
86 int dm355evm_msp_read(u8 reg
)
88 return i2c_smbus_read_byte_data(msp430
, reg
);
90 EXPORT_SYMBOL(dm355evm_msp_read
);
92 /*----------------------------------------------------------------------*/
95 * Many of the msp430 pins are just used as fixed-direction GPIOs.
96 * We could export a few more of them this way, if we wanted.
98 #define MSP_GPIO(bit,reg) ((DM355EVM_MSP_ ## reg) << 3 | (bit))
100 static const u8 msp_gpios
[] = {
102 MSP_GPIO(0, LED
), MSP_GPIO(1, LED
),
103 MSP_GPIO(2, LED
), MSP_GPIO(3, LED
),
104 MSP_GPIO(4, LED
), MSP_GPIO(5, LED
),
105 MSP_GPIO(6, LED
), MSP_GPIO(7, LED
),
106 /* SW6 and the NTSC/nPAL jumper */
107 MSP_GPIO(0, SWITCH1
), MSP_GPIO(1, SWITCH1
),
108 MSP_GPIO(2, SWITCH1
), MSP_GPIO(3, SWITCH1
),
109 MSP_GPIO(4, SWITCH1
),
110 /* switches on MMC/SD sockets */
111 MSP_GPIO(1, SDMMC
), MSP_GPIO(2, SDMMC
), /* mmc0 WP, nCD */
112 MSP_GPIO(3, SDMMC
), MSP_GPIO(4, SDMMC
), /* mmc1 WP, nCD */
115 #define MSP_GPIO_REG(offset) (msp_gpios[(offset)] >> 3)
116 #define MSP_GPIO_MASK(offset) BIT(msp_gpios[(offset)] & 0x07)
118 static int msp_gpio_in(struct gpio_chip
*chip
, unsigned offset
)
120 switch (MSP_GPIO_REG(offset
)) {
121 case DM355EVM_MSP_SWITCH1
:
122 case DM355EVM_MSP_SWITCH2
:
123 case DM355EVM_MSP_SDMMC
:
130 static u8 msp_led_cache
;
132 static int msp_gpio_get(struct gpio_chip
*chip
, unsigned offset
)
136 reg
= MSP_GPIO_REG(offset
);
137 status
= dm355evm_msp_read(reg
);
140 if (reg
== DM355EVM_MSP_LED
)
141 msp_led_cache
= status
;
142 return status
& MSP_GPIO_MASK(offset
);
145 static int msp_gpio_out(struct gpio_chip
*chip
, unsigned offset
, int value
)
149 /* NOTE: there are some other signals that could be
150 * packaged as output GPIOs, but they aren't as useful
151 * as the LEDs ... so for now we don't.
153 if (MSP_GPIO_REG(offset
) != DM355EVM_MSP_LED
)
156 mask
= MSP_GPIO_MASK(offset
);
157 bits
= msp_led_cache
;
162 msp_led_cache
= bits
;
164 return dm355evm_msp_write(bits
, DM355EVM_MSP_LED
);
167 static void msp_gpio_set(struct gpio_chip
*chip
, unsigned offset
, int value
)
169 msp_gpio_out(chip
, offset
, value
);
172 static struct gpio_chip dm355evm_msp_gpio
= {
173 .label
= "dm355evm_msp",
174 .owner
= THIS_MODULE
,
175 .direction_input
= msp_gpio_in
,
177 .direction_output
= msp_gpio_out
,
179 .base
= -EINVAL
, /* dynamic assignment */
180 .ngpio
= ARRAY_SIZE(msp_gpios
),
184 /*----------------------------------------------------------------------*/
186 static struct device
*add_child(struct i2c_client
*client
, const char *name
,
187 void *pdata
, unsigned pdata_len
,
188 bool can_wakeup
, int irq
)
190 struct platform_device
*pdev
;
193 pdev
= platform_device_alloc(name
, -1);
195 dev_dbg(&client
->dev
, "can't alloc dev\n");
200 device_init_wakeup(&pdev
->dev
, can_wakeup
);
201 pdev
->dev
.parent
= &client
->dev
;
204 status
= platform_device_add_data(pdev
, pdata
, pdata_len
);
206 dev_dbg(&pdev
->dev
, "can't add platform_data\n");
212 struct resource r
= {
214 .flags
= IORESOURCE_IRQ
,
217 status
= platform_device_add_resources(pdev
, &r
, 1);
219 dev_dbg(&pdev
->dev
, "can't add irq\n");
224 status
= platform_device_add(pdev
);
228 platform_device_put(pdev
);
229 dev_err(&client
->dev
, "can't add %s dev\n", name
);
230 return ERR_PTR(status
);
235 static int add_children(struct i2c_client
*client
)
237 static const struct {
240 } config_inputs
[] = {
241 /* 8 == right after the LEDs */
246 { 8 + 4, "NTSC/nPAL", },
249 struct device
*child
;
254 dm355evm_msp_gpio
.dev
= &client
->dev
;
255 status
= gpiochip_add(&dm355evm_msp_gpio
);
260 if (msp_has_leds()) {
261 #define GPIO_LED(l) .name = l, .active_low = true
262 static struct gpio_led evm_leds
[] = {
263 { GPIO_LED("dm355evm::ds14"),
264 .default_trigger
= "heartbeat", },
265 { GPIO_LED("dm355evm::ds15"),
266 .default_trigger
= "mmc0", },
267 { GPIO_LED("dm355evm::ds16"),
268 /* could also be a CE-ATA drive */
269 .default_trigger
= "mmc1", },
270 { GPIO_LED("dm355evm::ds17"),
271 .default_trigger
= "nand-disk", },
272 { GPIO_LED("dm355evm::ds18"), },
273 { GPIO_LED("dm355evm::ds19"), },
274 { GPIO_LED("dm355evm::ds20"), },
275 { GPIO_LED("dm355evm::ds21"), },
279 struct gpio_led_platform_data evm_led_data
= {
280 .num_leds
= ARRAY_SIZE(evm_leds
),
284 for (i
= 0; i
< ARRAY_SIZE(evm_leds
); i
++)
285 evm_leds
[i
].gpio
= i
+ dm355evm_msp_gpio
.base
;
287 /* NOTE: these are the only fully programmable LEDs
288 * on the board, since GPIO-61/ds22 (and many signals
289 * going to DC7) must be used for AEMIF address lines
290 * unless the top 1 GB of NAND is unused...
292 child
= add_child(client
, "leds-gpio",
293 &evm_led_data
, sizeof(evm_led_data
),
296 return PTR_ERR(child
);
299 /* configuration inputs */
300 for (i
= 0; i
< ARRAY_SIZE(config_inputs
); i
++) {
301 int gpio
= dm355evm_msp_gpio
.base
+ config_inputs
[i
].offset
;
303 gpio_request(gpio
, config_inputs
[i
].label
);
304 gpio_direction_input(gpio
);
306 /* make it easy for userspace to see these */
307 gpio_export(gpio
, false);
310 /* MMC/SD inputs -- right after the last config input */
311 if (client
->dev
.platform_data
) {
312 void (*mmcsd_setup
)(unsigned) = client
->dev
.platform_data
;
314 mmcsd_setup(dm355evm_msp_gpio
.base
+ 8 + 5);
317 /* RTC is a 32 bit counter, no alarm */
319 child
= add_child(client
, "rtc-dm355evm",
322 return PTR_ERR(child
);
325 /* input from buttons and IR remote (uses the IRQ) */
326 if (msp_has_keyboard()) {
327 child
= add_child(client
, "dm355evm_keys",
328 NULL
, 0, true, client
->irq
);
330 return PTR_ERR(child
);
336 /*----------------------------------------------------------------------*/
338 static void dm355evm_command(unsigned command
)
342 status
= dm355evm_msp_write(command
, DM355EVM_MSP_COMMAND
);
344 dev_err(&msp430
->dev
, "command %d failure %d\n",
348 static void dm355evm_power_off(void)
350 dm355evm_command(MSP_COMMAND_POWEROFF
);
353 static int dm355evm_msp_remove(struct i2c_client
*client
)
361 dm355evm_msp_probe(struct i2c_client
*client
, const struct i2c_device_id
*id
)
364 const char *video
= msp_has_tvp() ? "TVP5146" : "imager";
370 /* display revision status; doubles as sanity check */
371 status
= dm355evm_msp_read(DM355EVM_MSP_FIRMREV
);
374 dev_info(&client
->dev
, "firmware v.%02X, %s as video-in\n",
377 /* mux video input: either tvp5146 or some external imager */
378 status
= dm355evm_msp_write(msp_has_tvp() ? 0 : MSP_VIDEO_IMAGER
,
379 DM355EVM_MSP_VIDEO_IN
);
381 dev_warn(&client
->dev
, "error %d muxing %s as video-in\n",
384 /* init LED cache, and turn off the LEDs */
385 msp_led_cache
= 0xff;
386 dm355evm_msp_write(msp_led_cache
, DM355EVM_MSP_LED
);
388 /* export capabilities we support */
389 status
= add_children(client
);
394 pm_power_off
= dm355evm_power_off
;
399 /* FIXME remove children ... */
400 dm355evm_msp_remove(client
);
404 static const struct i2c_device_id dm355evm_msp_ids
[] = {
405 { "dm355evm_msp", 0 },
406 { /* end of list */ },
408 MODULE_DEVICE_TABLE(i2c
, dm355evm_msp_ids
);
410 static struct i2c_driver dm355evm_msp_driver
= {
411 .driver
.name
= "dm355evm_msp",
412 .id_table
= dm355evm_msp_ids
,
413 .probe
= dm355evm_msp_probe
,
414 .remove
= dm355evm_msp_remove
,
417 static int __init
dm355evm_msp_init(void)
419 return i2c_add_driver(&dm355evm_msp_driver
);
421 subsys_initcall(dm355evm_msp_init
);
423 static void __exit
dm355evm_msp_exit(void)
425 i2c_del_driver(&dm355evm_msp_driver
);
427 module_exit(dm355evm_msp_exit
);
429 MODULE_DESCRIPTION("Interface to MSP430 firmware on DM355EVM");
430 MODULE_LICENSE("GPL");