1 // SPDX-License-Identifier: GPL-2.0-or-later
3 * dm355evm_msp.c - driver for MSP430 firmware on DM355EVM board
5 * Copyright (C) 2008 David Brownell
8 #include <linux/init.h>
9 #include <linux/mutex.h>
10 #include <linux/platform_device.h>
11 #include <linux/clk.h>
12 #include <linux/module.h>
13 #include <linux/err.h>
14 #include <linux/gpio.h>
15 #include <linux/gpio/machine.h>
16 #include <linux/leds.h>
17 #include <linux/i2c.h>
18 #include <linux/mfd/dm355evm_msp.h>
22 * The DM355 is a DaVinci chip with video support but no C64+ DSP. Its
23 * EVM board has an MSP430 programmed with firmware for various board
24 * support functions. This driver exposes some of them directly, and
25 * supports other drivers (e.g. RTC, input) for more complex access.
27 * Because this firmware is entirely board-specific, this file embeds
28 * knowledge that would be passed as platform_data in a generic driver.
30 * This driver was tested with firmware revision A4.
33 #if IS_ENABLED(CONFIG_INPUT_DM355EVM)
34 #define msp_has_keyboard() true
36 #define msp_has_keyboard() false
39 #if IS_ENABLED(CONFIG_LEDS_GPIO)
40 #define msp_has_leds() true
42 #define msp_has_leds() false
45 #if IS_ENABLED(CONFIG_RTC_DRV_DM355EVM)
46 #define msp_has_rtc() true
48 #define msp_has_rtc() false
51 #if IS_ENABLED(CONFIG_VIDEO_TVP514X)
52 #define msp_has_tvp() true
54 #define msp_has_tvp() false
58 /*----------------------------------------------------------------------*/
60 /* REVISIT for paranoia's sake, retry reads/writes on error */
62 static struct i2c_client *msp430;
65 * dm355evm_msp_write - Writes a register in dm355evm_msp
66 * @value: the value to be written
67 * @reg: register address
69 * Returns result of operation - 0 is success, else negative errno
71 int dm355evm_msp_write(u8 value, u8 reg)
73 return i2c_smbus_write_byte_data(msp430, reg, value);
75 EXPORT_SYMBOL(dm355evm_msp_write);
78 * dm355evm_msp_read - Reads a register from dm355evm_msp
79 * @reg: register address
81 * Returns result of operation - value, or negative errno
83 int dm355evm_msp_read(u8 reg)
85 return i2c_smbus_read_byte_data(msp430, reg);
87 EXPORT_SYMBOL(dm355evm_msp_read);
89 /*----------------------------------------------------------------------*/
92 * Many of the msp430 pins are just used as fixed-direction GPIOs.
93 * We could export a few more of them this way, if we wanted.
95 #define MSP_GPIO(bit, reg) ((DM355EVM_MSP_ ## reg) << 3 | (bit))
97 static const u8 msp_gpios[] = {
99 MSP_GPIO(0, LED), MSP_GPIO(1, LED),
100 MSP_GPIO(2, LED), MSP_GPIO(3, LED),
101 MSP_GPIO(4, LED), MSP_GPIO(5, LED),
102 MSP_GPIO(6, LED), MSP_GPIO(7, LED),
103 /* SW6 and the NTSC/nPAL jumper */
104 MSP_GPIO(0, SWITCH1), MSP_GPIO(1, SWITCH1),
105 MSP_GPIO(2, SWITCH1), MSP_GPIO(3, SWITCH1),
106 MSP_GPIO(4, SWITCH1),
107 /* switches on MMC/SD sockets */
109 * Note: EVMDM355_ECP_VA4.pdf suggests that Bit 2 and 4 should be
110 * checked for card detection. However on the EVM bit 1 and 3 gives
111 * this status, for 0 and 1 instance respectively. The pdf also
112 * suggests that Bit 1 and 3 should be checked for write protection.
113 * However on the EVM bit 2 and 4 gives this status,for 0 and 1
114 * instance respectively.
116 MSP_GPIO(2, SDMMC), MSP_GPIO(1, SDMMC), /* mmc0 WP, nCD */
117 MSP_GPIO(4, SDMMC), MSP_GPIO(3, SDMMC), /* mmc1 WP, nCD */
120 static struct gpio_led evm_leds[] = {
121 { .name = "dm355evm::ds14",
122 .default_trigger = "heartbeat", },
123 { .name = "dm355evm::ds15",
124 .default_trigger = "mmc0", },
125 { .name = "dm355evm::ds16",
126 /* could also be a CE-ATA drive */
127 .default_trigger = "mmc1", },
128 { .name = "dm355evm::ds17",
129 .default_trigger = "nand-disk", },
130 { .name = "dm355evm::ds18", },
131 { .name = "dm355evm::ds19", },
132 { .name = "dm355evm::ds20", },
133 { .name = "dm355evm::ds21", },
136 static struct gpio_led_platform_data evm_led_data = {
137 .num_leds = ARRAY_SIZE(evm_leds),
141 static struct gpiod_lookup_table evm_leds_gpio_table = {
142 .dev_id = "leds-gpio",
145 * These GPIOs are on the dm355evm_msp
146 * GPIO chip at index 0..7
148 GPIO_LOOKUP_IDX("dm355evm_msp", 0, NULL,
150 GPIO_LOOKUP_IDX("dm355evm_msp", 1, NULL,
152 GPIO_LOOKUP_IDX("dm355evm_msp", 2, NULL,
154 GPIO_LOOKUP_IDX("dm355evm_msp", 3, NULL,
156 GPIO_LOOKUP_IDX("dm355evm_msp", 4, NULL,
158 GPIO_LOOKUP_IDX("dm355evm_msp", 5, NULL,
160 GPIO_LOOKUP_IDX("dm355evm_msp", 6, NULL,
162 GPIO_LOOKUP_IDX("dm355evm_msp", 7, NULL,
168 #define MSP_GPIO_REG(offset) (msp_gpios[(offset)] >> 3)
169 #define MSP_GPIO_MASK(offset) BIT(msp_gpios[(offset)] & 0x07)
171 static int msp_gpio_in(struct gpio_chip *chip, unsigned offset)
173 switch (MSP_GPIO_REG(offset)) {
174 case DM355EVM_MSP_SWITCH1:
175 case DM355EVM_MSP_SWITCH2:
176 case DM355EVM_MSP_SDMMC:
183 static u8 msp_led_cache;
185 static int msp_gpio_get(struct gpio_chip *chip, unsigned offset)
189 reg = MSP_GPIO_REG(offset);
190 status = dm355evm_msp_read(reg);
193 if (reg == DM355EVM_MSP_LED)
194 msp_led_cache = status;
195 return !!(status & MSP_GPIO_MASK(offset));
198 static int msp_gpio_out(struct gpio_chip *chip, unsigned offset, int value)
202 /* NOTE: there are some other signals that could be
203 * packaged as output GPIOs, but they aren't as useful
204 * as the LEDs ... so for now we don't.
206 if (MSP_GPIO_REG(offset) != DM355EVM_MSP_LED)
209 mask = MSP_GPIO_MASK(offset);
210 bits = msp_led_cache;
215 msp_led_cache = bits;
217 return dm355evm_msp_write(bits, DM355EVM_MSP_LED);
220 static void msp_gpio_set(struct gpio_chip *chip, unsigned offset, int value)
222 msp_gpio_out(chip, offset, value);
225 static struct gpio_chip dm355evm_msp_gpio = {
226 .label = "dm355evm_msp",
227 .owner = THIS_MODULE,
228 .direction_input = msp_gpio_in,
230 .direction_output = msp_gpio_out,
232 .base = -EINVAL, /* dynamic assignment */
233 .ngpio = ARRAY_SIZE(msp_gpios),
237 /*----------------------------------------------------------------------*/
239 static struct device *add_child(struct i2c_client *client, const char *name,
240 void *pdata, unsigned pdata_len,
241 bool can_wakeup, int irq)
243 struct platform_device *pdev;
246 pdev = platform_device_alloc(name, -1);
248 return ERR_PTR(-ENOMEM);
250 device_init_wakeup(&pdev->dev, can_wakeup);
251 pdev->dev.parent = &client->dev;
254 status = platform_device_add_data(pdev, pdata, pdata_len);
256 dev_dbg(&pdev->dev, "can't add platform_data\n");
262 struct resource r = {
264 .flags = IORESOURCE_IRQ,
267 status = platform_device_add_resources(pdev, &r, 1);
269 dev_dbg(&pdev->dev, "can't add irq\n");
274 status = platform_device_add(pdev);
281 platform_device_put(pdev);
282 dev_err(&client->dev, "failed to add device %s\n", name);
283 return ERR_PTR(status);
286 static int add_children(struct i2c_client *client)
288 static const struct {
291 } config_inputs[] = {
292 /* 8 == right after the LEDs */
297 { 8 + 4, "NTSC/nPAL", },
300 struct device *child;
305 dm355evm_msp_gpio.parent = &client->dev;
306 status = gpiochip_add_data(&dm355evm_msp_gpio, NULL);
311 if (msp_has_leds()) {
312 gpiod_add_lookup_table(&evm_leds_gpio_table);
313 /* NOTE: these are the only fully programmable LEDs
314 * on the board, since GPIO-61/ds22 (and many signals
315 * going to DC7) must be used for AEMIF address lines
316 * unless the top 1 GB of NAND is unused...
318 child = add_child(client, "leds-gpio",
319 &evm_led_data, sizeof(evm_led_data),
322 return PTR_ERR(child);
325 /* configuration inputs */
326 for (i = 0; i < ARRAY_SIZE(config_inputs); i++) {
327 int gpio = dm355evm_msp_gpio.base + config_inputs[i].offset;
329 gpio_request_one(gpio, GPIOF_IN, config_inputs[i].label);
331 /* make it easy for userspace to see these */
332 gpio_export(gpio, false);
335 /* MMC/SD inputs -- right after the last config input */
336 if (dev_get_platdata(&client->dev)) {
337 void (*mmcsd_setup)(unsigned) = dev_get_platdata(&client->dev);
339 mmcsd_setup(dm355evm_msp_gpio.base + 8 + 5);
342 /* RTC is a 32 bit counter, no alarm */
344 child = add_child(client, "rtc-dm355evm",
347 return PTR_ERR(child);
350 /* input from buttons and IR remote (uses the IRQ) */
351 if (msp_has_keyboard()) {
352 child = add_child(client, "dm355evm_keys",
353 NULL, 0, true, client->irq);
355 return PTR_ERR(child);
361 /*----------------------------------------------------------------------*/
363 static void dm355evm_command(unsigned command)
367 status = dm355evm_msp_write(command, DM355EVM_MSP_COMMAND);
369 dev_err(&msp430->dev, "command %d failure %d\n",
373 static void dm355evm_power_off(void)
375 dm355evm_command(MSP_COMMAND_POWEROFF);
378 static int dm355evm_msp_remove(struct i2c_client *client)
386 dm355evm_msp_probe(struct i2c_client *client, const struct i2c_device_id *id)
389 const char *video = msp_has_tvp() ? "TVP5146" : "imager";
395 /* display revision status; doubles as sanity check */
396 status = dm355evm_msp_read(DM355EVM_MSP_FIRMREV);
399 dev_info(&client->dev, "firmware v.%02X, %s as video-in\n",
402 /* mux video input: either tvp5146 or some external imager */
403 status = dm355evm_msp_write(msp_has_tvp() ? 0 : MSP_VIDEO_IMAGER,
404 DM355EVM_MSP_VIDEO_IN);
406 dev_warn(&client->dev, "error %d muxing %s as video-in\n",
409 /* init LED cache, and turn off the LEDs */
410 msp_led_cache = 0xff;
411 dm355evm_msp_write(msp_led_cache, DM355EVM_MSP_LED);
413 /* export capabilities we support */
414 status = add_children(client);
419 pm_power_off = dm355evm_power_off;
424 /* FIXME remove children ... */
425 dm355evm_msp_remove(client);
429 static const struct i2c_device_id dm355evm_msp_ids[] = {
430 { "dm355evm_msp", 0 },
431 { /* end of list */ },
433 MODULE_DEVICE_TABLE(i2c, dm355evm_msp_ids);
435 static struct i2c_driver dm355evm_msp_driver = {
436 .driver.name = "dm355evm_msp",
437 .id_table = dm355evm_msp_ids,
438 .probe = dm355evm_msp_probe,
439 .remove = dm355evm_msp_remove,
442 static int __init dm355evm_msp_init(void)
444 return i2c_add_driver(&dm355evm_msp_driver);
446 subsys_initcall(dm355evm_msp_init);
448 static void __exit dm355evm_msp_exit(void)
450 i2c_del_driver(&dm355evm_msp_driver);
452 module_exit(dm355evm_msp_exit);
454 MODULE_DESCRIPTION("Interface to MSP430 firmware on DM355EVM");
455 MODULE_LICENSE("GPL");