xref: /linux/drivers/tty/serial/max310x.c (revision 889600e21e3be388a6817c2a0dac0411df860751)
1 // SPDX-License-Identifier: GPL-2.0+
2 /*
3  *  Maxim (Dallas) MAX3107/8/9, MAX14830 serial driver
4  *
5  *  Copyright (C) 2012-2016 Alexander Shiyan <shc_work@mail.ru>
6  *
7  *  Based on max3100.c, by Christian Pellegrin <chripell@evolware.org>
8  *  Based on max3110.c, by Feng Tang <feng.tang@intel.com>
9  *  Based on max3107.c, by Aavamobile
10  */
11 
12 #include <linux/bitfield.h>
13 #include <linux/bitops.h>
14 #include <linux/clk.h>
15 #include <linux/delay.h>
16 #include <linux/device.h>
17 #include <linux/gpio/driver.h>
18 #include <linux/i2c.h>
19 #include <linux/module.h>
20 #include <linux/property.h>
21 #include <linux/regmap.h>
22 #include <linux/serial_core.h>
23 #include <linux/serial.h>
24 #include <linux/tty.h>
25 #include <linux/tty_flip.h>
26 #include <linux/spi/spi.h>
27 #include <linux/uaccess.h>
28 
29 #define MAX310X_NAME			"max310x"
30 #define MAX310X_MAJOR			204
31 #define MAX310X_MINOR			209
32 #define MAX310X_UART_NRMAX		16
33 #define MAX310X_MAX_PORTS		4 /* Maximum number of UART ports per IC. */
34 
35 /* MAX310X register definitions */
36 #define MAX310X_RHR_REG			(0x00) /* RX FIFO */
37 #define MAX310X_THR_REG			(0x00) /* TX FIFO */
38 #define MAX310X_IRQEN_REG		(0x01) /* IRQ enable */
39 #define MAX310X_IRQSTS_REG		(0x02) /* IRQ status */
40 #define MAX310X_LSR_IRQEN_REG		(0x03) /* LSR IRQ enable */
41 #define MAX310X_LSR_IRQSTS_REG		(0x04) /* LSR IRQ status */
42 #define MAX310X_REG_05			(0x05)
43 #define MAX310X_SPCHR_IRQEN_REG		MAX310X_REG_05 /* Special char IRQ en */
44 #define MAX310X_SPCHR_IRQSTS_REG	(0x06) /* Special char IRQ status */
45 #define MAX310X_STS_IRQEN_REG		(0x07) /* Status IRQ enable */
46 #define MAX310X_STS_IRQSTS_REG		(0x08) /* Status IRQ status */
47 #define MAX310X_MODE1_REG		(0x09) /* MODE1 */
48 #define MAX310X_MODE2_REG		(0x0a) /* MODE2 */
49 #define MAX310X_LCR_REG			(0x0b) /* LCR */
50 #define MAX310X_RXTO_REG		(0x0c) /* RX timeout */
51 #define MAX310X_HDPIXDELAY_REG		(0x0d) /* Auto transceiver delays */
52 #define MAX310X_IRDA_REG		(0x0e) /* IRDA settings */
53 #define MAX310X_FLOWLVL_REG		(0x0f) /* Flow control levels */
54 #define MAX310X_FIFOTRIGLVL_REG		(0x10) /* FIFO IRQ trigger levels */
55 #define MAX310X_TXFIFOLVL_REG		(0x11) /* TX FIFO level */
56 #define MAX310X_RXFIFOLVL_REG		(0x12) /* RX FIFO level */
57 #define MAX310X_FLOWCTRL_REG		(0x13) /* Flow control */
58 #define MAX310X_XON1_REG		(0x14) /* XON1 character */
59 #define MAX310X_XON2_REG		(0x15) /* XON2 character */
60 #define MAX310X_XOFF1_REG		(0x16) /* XOFF1 character */
61 #define MAX310X_XOFF2_REG		(0x17) /* XOFF2 character */
62 #define MAX310X_GPIOCFG_REG		(0x18) /* GPIO config */
63 #define MAX310X_GPIODATA_REG		(0x19) /* GPIO data */
64 #define MAX310X_PLLCFG_REG		(0x1a) /* PLL config */
65 #define MAX310X_BRGCFG_REG		(0x1b) /* Baud rate generator conf */
66 #define MAX310X_BRGDIVLSB_REG		(0x1c) /* Baud rate divisor LSB */
67 #define MAX310X_BRGDIVMSB_REG		(0x1d) /* Baud rate divisor MSB */
68 #define MAX310X_CLKSRC_REG		(0x1e) /* Clock source */
69 #define MAX310X_REG_1F			(0x1f)
70 #define MAX310X_EXTREG_START		(0x20) /* Only relevant in SPI mode. */
71 
72 #define MAX310X_REVID_REG		MAX310X_REG_1F /* Revision ID */
73 
74 #define MAX310X_GLOBALIRQ_REG		MAX310X_REG_1F /* Global IRQ (RO) */
75 #define MAX310X_GLOBALCMD_REG		MAX310X_REG_1F /* Global Command (WO) */
76 
77 /* Extended registers */
78 #define MAX310X_REVID_EXTREG		(0x25) /* Revision ID
79 						* (extended addressing space)
80 						*/
81 /* IRQ register bits */
82 #define MAX310X_IRQ_LSR_BIT		(1 << 0) /* LSR interrupt */
83 #define MAX310X_IRQ_SPCHR_BIT		(1 << 1) /* Special char interrupt */
84 #define MAX310X_IRQ_STS_BIT		(1 << 2) /* Status interrupt */
85 #define MAX310X_IRQ_RXFIFO_BIT		(1 << 3) /* RX FIFO interrupt */
86 #define MAX310X_IRQ_TXFIFO_BIT		(1 << 4) /* TX FIFO interrupt */
87 #define MAX310X_IRQ_TXEMPTY_BIT		(1 << 5) /* TX FIFO empty interrupt */
88 #define MAX310X_IRQ_RXEMPTY_BIT		(1 << 6) /* RX FIFO empty interrupt */
89 #define MAX310X_IRQ_CTS_BIT		(1 << 7) /* CTS interrupt */
90 
91 /* LSR register bits */
92 #define MAX310X_LSR_RXTO_BIT		(1 << 0) /* RX timeout */
93 #define MAX310X_LSR_RXOVR_BIT		(1 << 1) /* RX overrun */
94 #define MAX310X_LSR_RXPAR_BIT		(1 << 2) /* RX parity error */
95 #define MAX310X_LSR_FRERR_BIT		(1 << 3) /* Frame error */
96 #define MAX310X_LSR_RXBRK_BIT		(1 << 4) /* RX break */
97 #define MAX310X_LSR_RXNOISE_BIT		(1 << 5) /* RX noise */
98 #define MAX310X_LSR_CTS_BIT		(1 << 7) /* CTS pin state */
99 
100 /* Special character register bits */
101 #define MAX310X_SPCHR_XON1_BIT		(1 << 0) /* XON1 character */
102 #define MAX310X_SPCHR_XON2_BIT		(1 << 1) /* XON2 character */
103 #define MAX310X_SPCHR_XOFF1_BIT		(1 << 2) /* XOFF1 character */
104 #define MAX310X_SPCHR_XOFF2_BIT		(1 << 3) /* XOFF2 character */
105 #define MAX310X_SPCHR_BREAK_BIT		(1 << 4) /* RX break */
106 #define MAX310X_SPCHR_MULTIDROP_BIT	(1 << 5) /* 9-bit multidrop addr char */
107 
108 /* Status register bits */
109 #define MAX310X_STS_GPIO0_BIT		(1 << 0) /* GPIO 0 interrupt */
110 #define MAX310X_STS_GPIO1_BIT		(1 << 1) /* GPIO 1 interrupt */
111 #define MAX310X_STS_GPIO2_BIT		(1 << 2) /* GPIO 2 interrupt */
112 #define MAX310X_STS_GPIO3_BIT		(1 << 3) /* GPIO 3 interrupt */
113 #define MAX310X_STS_CLKREADY_BIT	(1 << 5) /* Clock ready */
114 #define MAX310X_STS_SLEEP_BIT		(1 << 6) /* Sleep interrupt */
115 
116 /* MODE1 register bits */
117 #define MAX310X_MODE1_RXDIS_BIT		(1 << 0) /* RX disable */
118 #define MAX310X_MODE1_TXDIS_BIT		(1 << 1) /* TX disable */
119 #define MAX310X_MODE1_TXHIZ_BIT		(1 << 2) /* TX pin three-state */
120 #define MAX310X_MODE1_RTSHIZ_BIT	(1 << 3) /* RTS pin three-state */
121 #define MAX310X_MODE1_TRNSCVCTRL_BIT	(1 << 4) /* Transceiver ctrl enable */
122 #define MAX310X_MODE1_FORCESLEEP_BIT	(1 << 5) /* Force sleep mode */
123 #define MAX310X_MODE1_AUTOSLEEP_BIT	(1 << 6) /* Auto sleep enable */
124 #define MAX310X_MODE1_IRQSEL_BIT	(1 << 7) /* IRQ pin enable */
125 
126 /* MODE2 register bits */
127 #define MAX310X_MODE2_RST_BIT		(1 << 0) /* Chip reset */
128 #define MAX310X_MODE2_FIFORST_BIT	(1 << 1) /* FIFO reset */
129 #define MAX310X_MODE2_RXTRIGINV_BIT	(1 << 2) /* RX FIFO INT invert */
130 #define MAX310X_MODE2_RXEMPTINV_BIT	(1 << 3) /* RX FIFO empty INT invert */
131 #define MAX310X_MODE2_SPCHR_BIT		(1 << 4) /* Special chr detect enable */
132 #define MAX310X_MODE2_LOOPBACK_BIT	(1 << 5) /* Internal loopback enable */
133 #define MAX310X_MODE2_MULTIDROP_BIT	(1 << 6) /* 9-bit multidrop enable */
134 #define MAX310X_MODE2_ECHOSUPR_BIT	(1 << 7) /* ECHO suppression enable */
135 
136 /* LCR register bits */
137 #define MAX310X_LCR_LENGTH0_BIT		(1 << 0) /* Word length bit 0 */
138 #define MAX310X_LCR_LENGTH1_BIT		(1 << 1) /* Word length bit 1
139 						  *
140 						  * Word length bits table:
141 						  * 00 -> 5 bit words
142 						  * 01 -> 6 bit words
143 						  * 10 -> 7 bit words
144 						  * 11 -> 8 bit words
145 						  */
146 #define MAX310X_LCR_STOPLEN_BIT		(1 << 2) /* STOP length bit
147 						  *
148 						  * STOP length bit table:
149 						  * 0 -> 1 stop bit
150 						  * 1 -> 1-1.5 stop bits if
151 						  *      word length is 5,
152 						  *      2 stop bits otherwise
153 						  */
154 #define MAX310X_LCR_PARITY_BIT		(1 << 3) /* Parity bit enable */
155 #define MAX310X_LCR_EVENPARITY_BIT	(1 << 4) /* Even parity bit enable */
156 #define MAX310X_LCR_FORCEPARITY_BIT	(1 << 5) /* 9-bit multidrop parity */
157 #define MAX310X_LCR_TXBREAK_BIT		(1 << 6) /* TX break enable */
158 #define MAX310X_LCR_RTS_BIT		(1 << 7) /* RTS pin control */
159 
160 /* IRDA register bits */
161 #define MAX310X_IRDA_IRDAEN_BIT		(1 << 0) /* IRDA mode enable */
162 #define MAX310X_IRDA_SIR_BIT		(1 << 1) /* SIR mode enable */
163 
164 /* Flow control trigger level register masks */
165 #define MAX310X_FLOWLVL_HALT_MASK	GENMASK(3, 0) /* Flow control halt level */
166 #define MAX310X_FLOWLVL_RES_MASK	GENMASK(7, 4) /* Flow control resume level */
167 #define MAX310X_FLOWLVL_HALT(words)	((words / 8) & 0x0f)
168 #define MAX310X_FLOWLVL_RES(words)	(((words / 8) & 0x0f) << 4)
169 
170 /* FIFO interrupt trigger level register masks */
171 #define MAX310X_FIFOTRIGLVL_TX_MASK	GENMASK(3, 0) /* TX FIFO trigger level */
172 #define MAX310X_FIFOTRIGLVL_RX_MASK	GENMASK(7, 4) /* RX FIFO trigger level */
173 #define MAX310X_FIFOTRIGLVL_TX(words)	((words / 8) & 0x0f)
174 #define MAX310X_FIFOTRIGLVL_RX(words)	(((words / 8) & 0x0f) << 4)
175 
176 /* Flow control register bits */
177 #define MAX310X_FLOWCTRL_AUTORTS_BIT	(1 << 0) /* Auto RTS flow ctrl enable */
178 #define MAX310X_FLOWCTRL_AUTOCTS_BIT	(1 << 1) /* Auto CTS flow ctrl enable */
179 #define MAX310X_FLOWCTRL_GPIADDR_BIT	(1 << 2) /* Enables that GPIO inputs
180 						  * are used in conjunction with
181 						  * XOFF2 for definition of
182 						  * special character
183 						  */
184 #define MAX310X_FLOWCTRL_SWFLOWEN_BIT	(1 << 3) /* Auto SW flow ctrl enable */
185 #define MAX310X_FLOWCTRL_SWFLOW0_BIT	(1 << 4) /* SWFLOW bit 0 */
186 #define MAX310X_FLOWCTRL_SWFLOW1_BIT	(1 << 5) /* SWFLOW bit 1
187 						  *
188 						  * SWFLOW bits 1 & 0 table:
189 						  * 00 -> no transmitter flow
190 						  *       control
191 						  * 01 -> receiver compares
192 						  *       XON2 and XOFF2
193 						  *       and controls
194 						  *       transmitter
195 						  * 10 -> receiver compares
196 						  *       XON1 and XOFF1
197 						  *       and controls
198 						  *       transmitter
199 						  * 11 -> receiver compares
200 						  *       XON1, XON2, XOFF1 and
201 						  *       XOFF2 and controls
202 						  *       transmitter
203 						  */
204 #define MAX310X_FLOWCTRL_SWFLOW2_BIT	(1 << 6) /* SWFLOW bit 2 */
205 #define MAX310X_FLOWCTRL_SWFLOW3_BIT	(1 << 7) /* SWFLOW bit 3
206 						  *
207 						  * SWFLOW bits 3 & 2 table:
208 						  * 00 -> no received flow
209 						  *       control
210 						  * 01 -> transmitter generates
211 						  *       XON2 and XOFF2
212 						  * 10 -> transmitter generates
213 						  *       XON1 and XOFF1
214 						  * 11 -> transmitter generates
215 						  *       XON1, XON2, XOFF1 and
216 						  *       XOFF2
217 						  */
218 
219 /* PLL configuration register masks */
220 #define MAX310X_PLLCFG_PREDIV_MASK	GENMASK(5, 0) /* PLL predivision value */
221 #define MAX310X_PLLCFG_PLLFACTOR_MASK	GENMASK(7, 6) /* PLL multiplication factor */
222 
223 /* Baud rate generator configuration register bits */
224 #define MAX310X_BRGCFG_2XMODE_BIT	(1 << 4) /* Double baud rate */
225 #define MAX310X_BRGCFG_4XMODE_BIT	(1 << 5) /* Quadruple baud rate */
226 
227 /* Clock source register bits */
228 #define MAX310X_CLKSRC_CRYST_BIT	(1 << 1) /* Crystal osc enable */
229 #define MAX310X_CLKSRC_PLL_BIT		(1 << 2) /* PLL enable */
230 #define MAX310X_CLKSRC_PLLBYP_BIT	(1 << 3) /* PLL bypass */
231 #define MAX310X_CLKSRC_EXTCLK_BIT	(1 << 4) /* External clock enable */
232 #define MAX310X_CLKSRC_CLK2RTS_BIT	(1 << 7) /* Baud clk to RTS pin */
233 
234 /* Global commands */
235 #define MAX310X_EXTREG_ENBL		(0xce)
236 #define MAX310X_EXTREG_DSBL		(0xcd)
237 
238 /* Misc definitions */
239 #define MAX310X_FIFO_SIZE		(128)
240 #define MAX310x_REV_MASK		GENMASK(7, 3)
241 #define MAX310X_WRITE_BIT		0x80
242 
243 /* Port startup definitions */
244 #define MAX310X_PORT_STARTUP_SLEEP_US	10000  /* Delay between retries */
245 #define MAX310X_PORT_STARTUP_TIMEOUT_US	(20 * MAX310X_PORT_STARTUP_SLEEP_US) /* Total timeout */
246 
247 /* Crystal-related definitions */
248 #define MAX310X_XTAL_SLEEP_US		10000  /* Delay between retries */
249 #define MAX310X_XTAL_TIMEOUT_US		(20 * MAX310X_XTAL_SLEEP_US) /* Total timeout */
250 
251 /* MAX3107 specific */
252 #define MAX3107_REV_ID			(0xa0)
253 
254 /* MAX3109 specific */
255 #define MAX3109_REV_ID			(0xc0)
256 
257 /* MAX14830 specific */
258 #define MAX14830_BRGCFG_CLKDIS_BIT	(1 << 6) /* Clock Disable */
259 #define MAX14830_REV_ID			(0xb0)
260 
261 struct max310x_clk_config_t {
262 	u8 prediv; /* Predivider */
263 	u8 pll_mult; /* PLL multiplier */
264 	unsigned int fref; /*
265 			    * Reference clock for fractional baud rate generator:
266 			    *   PLL enabled:  (freq / prediv) x pll_mult
267 			    *   PLL disabled: freq
268 			    */
269 	unsigned int err; /* Computed error for selected parameters */
270 };
271 
272 struct max310x_if_cfg {
273 	int (*extended_reg_enable)(struct device *dev, bool enable);
274 	u8 rev_id_offset;
275 };
276 
277 struct max310x_devtype {
278 	struct {
279 		unsigned short min;
280 		unsigned short max;
281 	} slave_addr; /* Relevant only in I2C mode. */
282 	int	nr;
283 	char	name[9];
284 	u8	mode1;
285 	u8	rev_id_val;
286 	u8	rev_id_reg; /* Relevant only if rev_id_val is defined. */
287 	u8	power_reg; /* Register address for power/sleep control. */
288 	u8	power_bit; /* Bit for sleep or power-off mode (active high). */
289 };
290 
291 struct max310x_one {
292 	struct uart_port	port;
293 	struct work_struct	tx_work;
294 	struct work_struct	md_work;
295 	struct work_struct	rs_work;
296 	struct regmap		*regmap;
297 
298 	u8 rx_buf[MAX310X_FIFO_SIZE];
299 };
300 #define to_max310x_port(_port) \
301 	container_of(_port, struct max310x_one, port)
302 
303 struct max310x_port {
304 	const struct max310x_devtype *devtype;
305 	const struct max310x_if_cfg *if_cfg;
306 	struct regmap		*regmap;
307 	struct clk		*clk;
308 #ifdef CONFIG_GPIOLIB
309 	struct gpio_chip	gpio;
310 #endif
311 	struct max310x_one	p[];
312 };
313 
314 static struct uart_driver max310x_uart = {
315 	.owner		= THIS_MODULE,
316 	.driver_name	= MAX310X_NAME,
317 	.dev_name	= "ttyMAX",
318 	.major		= MAX310X_MAJOR,
319 	.minor		= MAX310X_MINOR,
320 	.nr		= MAX310X_UART_NRMAX,
321 };
322 
323 static DECLARE_BITMAP(max310x_lines, MAX310X_UART_NRMAX);
324 
max310x_port_read(struct uart_port * port,u8 reg)325 static u8 max310x_port_read(struct uart_port *port, u8 reg)
326 {
327 	struct max310x_one *one = to_max310x_port(port);
328 	unsigned int val = 0;
329 
330 	regmap_read(one->regmap, reg, &val);
331 
332 	return val;
333 }
334 
max310x_port_write(struct uart_port * port,u8 reg,u8 val)335 static void max310x_port_write(struct uart_port *port, u8 reg, u8 val)
336 {
337 	struct max310x_one *one = to_max310x_port(port);
338 
339 	regmap_write(one->regmap, reg, val);
340 }
341 
max310x_port_update(struct uart_port * port,u8 reg,u8 mask,u8 val)342 static void max310x_port_update(struct uart_port *port, u8 reg, u8 mask, u8 val)
343 {
344 	struct max310x_one *one = to_max310x_port(port);
345 
346 	regmap_update_bits(one->regmap, reg, mask, val);
347 }
348 
max310x_detect(struct device * dev)349 static int max310x_detect(struct device *dev)
350 {
351 	struct max310x_port *s = dev_get_drvdata(dev);
352 	unsigned int val = 0;
353 	int ret;
354 
355 	/* Check if variant supports REV ID register: */
356 	if (s->devtype->rev_id_val) {
357 		u8 rev_id_reg = s->devtype->rev_id_reg;
358 
359 		/* Check if REV ID is in extended addressing space: */
360 		if (s->devtype->rev_id_reg >= MAX310X_EXTREG_START) {
361 			ret = s->if_cfg->extended_reg_enable(dev, true);
362 			if (ret)
363 				return ret;
364 
365 			/* Adjust REV ID extended addressing space address: */
366 			if (s->if_cfg->rev_id_offset)
367 				rev_id_reg -= s->if_cfg->rev_id_offset;
368 		}
369 
370 		regmap_read(s->regmap, rev_id_reg, &val);
371 
372 		if (s->devtype->rev_id_reg >= MAX310X_EXTREG_START) {
373 			ret = s->if_cfg->extended_reg_enable(dev, false);
374 			if (ret)
375 				return ret;
376 		}
377 
378 		if (((val & MAX310x_REV_MASK) != s->devtype->rev_id_val))
379 			return dev_err_probe(dev, -ENODEV,
380 					     "%s ID 0x%02x does not match\n",
381 					     s->devtype->name, val);
382 	} else {
383 		/*
384 		 * For variant without REV ID register, just check default value
385 		 * from clocksource register to make sure everything works.
386 		 */
387 		ret = regmap_read(s->regmap, MAX310X_CLKSRC_REG, &val);
388 		if (ret)
389 			return ret;
390 
391 		if (val != (MAX310X_CLKSRC_EXTCLK_BIT | MAX310X_CLKSRC_PLLBYP_BIT))
392 			return dev_err_probe(dev, -ENODEV,
393 					     "%s not present\n",
394 					     s->devtype->name);
395 	}
396 
397 	return 0;
398 }
399 
max310x_power(struct uart_port * port,int on)400 static void max310x_power(struct uart_port *port, int on)
401 {
402 	struct max310x_port *s = dev_get_drvdata(port->dev);
403 
404 	max310x_port_update(port, s->devtype->power_reg, s->devtype->power_bit,
405 			    on ? 0 : s->devtype->power_bit);
406 	if (on)
407 		msleep(50);
408 }
409 
410 static const struct max310x_devtype max3107_devtype = {
411 	.name	= "MAX3107",
412 	.nr	= 1,
413 	.mode1	= MAX310X_MODE1_AUTOSLEEP_BIT | MAX310X_MODE1_IRQSEL_BIT,
414 	.rev_id_val = MAX3107_REV_ID,
415 	.rev_id_reg = MAX310X_REVID_REG,
416 	.power_reg = MAX310X_MODE1_REG,
417 	.power_bit = MAX310X_MODE1_FORCESLEEP_BIT,
418 	.slave_addr	= {
419 		.min = 0x2c,
420 		.max = 0x2f,
421 	},
422 };
423 
424 static const struct max310x_devtype max3108_devtype = {
425 	.name	= "MAX3108",
426 	.nr	= 1,
427 	.mode1	= MAX310X_MODE1_AUTOSLEEP_BIT,
428 	.rev_id_val = 0, /* Unsupported. */
429 	.rev_id_reg = 0, /* Irrelevant when rev_id_val is not defined. */
430 	.power_reg = MAX310X_MODE1_REG,
431 	.power_bit = MAX310X_MODE1_FORCESLEEP_BIT,
432 	.slave_addr	= {
433 		.min = 0x60,
434 		.max = 0x6f,
435 	},
436 };
437 
438 static const struct max310x_devtype max3109_devtype = {
439 	.name	= "MAX3109",
440 	.nr	= 2,
441 	.mode1	= MAX310X_MODE1_AUTOSLEEP_BIT,
442 	.rev_id_val = MAX3109_REV_ID,
443 	.rev_id_reg = MAX310X_REVID_EXTREG,
444 	.power_reg = MAX310X_MODE1_REG,
445 	.power_bit = MAX310X_MODE1_FORCESLEEP_BIT,
446 	.slave_addr	= {
447 		.min = 0x60,
448 		.max = 0x6f,
449 	},
450 };
451 
452 static const struct max310x_devtype max14830_devtype = {
453 	.name	= "MAX14830",
454 	.nr	= 4,
455 	.mode1	= MAX310X_MODE1_IRQSEL_BIT,
456 	.rev_id_val = MAX14830_REV_ID,
457 	.rev_id_reg = MAX310X_REVID_EXTREG,
458 	.power_reg = MAX310X_BRGCFG_REG,
459 	.power_bit = MAX14830_BRGCFG_CLKDIS_BIT,
460 	.slave_addr	= {
461 		.min = 0x60,
462 		.max = 0x6f,
463 	},
464 };
465 
max310x_reg_writeable(struct device * dev,unsigned int reg)466 static bool max310x_reg_writeable(struct device *dev, unsigned int reg)
467 {
468 	switch (reg) {
469 	case MAX310X_IRQSTS_REG:
470 	case MAX310X_LSR_IRQSTS_REG:
471 	case MAX310X_SPCHR_IRQSTS_REG:
472 	case MAX310X_STS_IRQSTS_REG:
473 	case MAX310X_TXFIFOLVL_REG:
474 	case MAX310X_RXFIFOLVL_REG:
475 		return false;
476 	default:
477 		return true;
478 	}
479 }
480 
max310x_reg_volatile(struct device * dev,unsigned int reg)481 static bool max310x_reg_volatile(struct device *dev, unsigned int reg)
482 {
483 	switch (reg) {
484 	case MAX310X_RHR_REG:
485 	case MAX310X_IRQSTS_REG:
486 	case MAX310X_LSR_IRQSTS_REG:
487 	case MAX310X_SPCHR_IRQSTS_REG:
488 	case MAX310X_STS_IRQSTS_REG:
489 	case MAX310X_TXFIFOLVL_REG:
490 	case MAX310X_RXFIFOLVL_REG:
491 	case MAX310X_GPIODATA_REG:
492 	case MAX310X_BRGDIVLSB_REG:
493 	case MAX310X_REG_05:
494 	case MAX310X_REG_1F:
495 		return true;
496 	default:
497 		return false;
498 	}
499 }
500 
max310x_reg_precious(struct device * dev,unsigned int reg)501 static bool max310x_reg_precious(struct device *dev, unsigned int reg)
502 {
503 	switch (reg) {
504 	case MAX310X_RHR_REG:
505 	case MAX310X_IRQSTS_REG:
506 	case MAX310X_SPCHR_IRQSTS_REG:
507 	case MAX310X_STS_IRQSTS_REG:
508 		return true;
509 	default:
510 		return false;
511 	}
512 }
513 
max310x_reg_noinc(struct device * dev,unsigned int reg)514 static bool max310x_reg_noinc(struct device *dev, unsigned int reg)
515 {
516 	return reg == MAX310X_RHR_REG;
517 }
518 
max310x_set_baud(struct uart_port * port,int baud)519 static int max310x_set_baud(struct uart_port *port, int baud)
520 {
521 	unsigned int mode = 0, div = 0, frac = 0, c = 0, F = 0;
522 
523 	/*
524 	 * Calculate the integer divisor first. Select a proper mode
525 	 * in case if the requested baud is too high for the pre-defined
526 	 * clocks frequency.
527 	 */
528 	div = port->uartclk / baud;
529 	if (div < 8) {
530 		/* Mode x4 */
531 		c = 4;
532 		mode = MAX310X_BRGCFG_4XMODE_BIT;
533 	} else if (div < 16) {
534 		/* Mode x2 */
535 		c = 8;
536 		mode = MAX310X_BRGCFG_2XMODE_BIT;
537 	} else {
538 		c = 16;
539 	}
540 
541 	/* Calculate the divisor in accordance with the fraction coefficient */
542 	div /= c;
543 	F = c*baud;
544 
545 	/* Calculate the baud rate fraction */
546 	if (div > 0)
547 		frac = (16*(port->uartclk % F)) / F;
548 	else
549 		div = 1;
550 
551 	max310x_port_write(port, MAX310X_BRGDIVMSB_REG, div >> 8);
552 	max310x_port_write(port, MAX310X_BRGDIVLSB_REG, div);
553 	max310x_port_write(port, MAX310X_BRGCFG_REG, frac | mode);
554 
555 	/* Return the actual baud rate we just programmed */
556 	return (16*port->uartclk) / (c*(16*div + frac));
557 }
558 
max310x_try_cfg(unsigned int fdiv,u8 div,u8 pll_mult,struct max310x_clk_config_t * cfg)559 static void max310x_try_cfg(unsigned int fdiv, u8 div, u8 pll_mult,
560 			    struct max310x_clk_config_t *cfg)
561 {
562 	unsigned int fmul = fdiv * pll_mult;
563 	unsigned int err;
564 
565 	/* Use high-enough baudrate to calculate error */
566 	err = fmul % (460800 * 16);
567 
568 	if (cfg->err > err) {
569 		cfg->err = err;
570 		cfg->pll_mult = pll_mult;
571 		cfg->prediv = div;
572 		cfg->fref = fmul;
573 	}
574 }
575 
max310x_pll_mult_to_id(u8 pll_mult)576 static u8 max310x_pll_mult_to_id(u8 pll_mult)
577 {
578 	switch (pll_mult) {
579 	case 144:	return 3;
580 	case 96:	return 2;
581 	case 48:	return 1;
582 	case 6:
583 	default:	return 0;
584 	}
585 }
586 
587 /*
588  * From table 7 in datasheet: PLLFactor Selector Guide
589  *
590  * +-----------+----------------+-------------------+-------------------+
591  * | PLLFactor | MULTIPLICATION |      fPLLIN       |       fREF        |
592  * |  (1 & 0)  |     FACTOR     +---------+---------+---------+---------+
593  * |           |                |   MIN   |   MAX   |   MIN   |   MAX   |
594  * +-----------+----------------+---------+---------+---------+---------+
595  * |     0     |        6       |  500kHz |  800kHz |   3MHz  |  4.8MHz |
596  * +-----------+----------------+---------+---------+---------+---------+
597  * |     1     |       48       |  850kHz |  1.2MHz | 40.8MHz |  56MHz  |
598  * +-----------+----------------+---------+---------+---------+---------+
599  * |     2     |       96       |  425kHz |   1MHz  | 40.8MHz |  96MHz  |
600  * +-----------+----------------+---------+---------+---------+---------+
601  * |     3     |      144       |  390kHz |  667kHz |  56MHz  |  96MHz  |
602  * +-----------+----------------+---------+---------+---------+---------+
603  */
max310x_set_ref_clk(struct device * dev,struct max310x_port * s,unsigned int freq,unsigned int * fref,bool xtal)604 static int max310x_set_ref_clk(struct device *dev, struct max310x_port *s,
605 			       unsigned int freq, unsigned int *fref, bool xtal)
606 {
607 	unsigned int div, fdiv, clksrc, val;
608 	struct max310x_clk_config_t cfg;
609 
610 	cfg.err = UINT_MAX;
611 	cfg.prediv = 0;
612 	cfg.fref = freq;
613 
614 	/* First, update error without PLL */
615 	max310x_try_cfg(freq, 1, 1, &cfg);
616 
617 	/* Try all possible PLL dividers */
618 	for (div = 1; (div <= 63) && cfg.err; div++) {
619 		fdiv = DIV_ROUND_CLOSEST(freq, div);
620 
621 		if ((fdiv >= 500000) && (fdiv <= 800000))
622 			max310x_try_cfg(fdiv, div, 6, &cfg);   /* PLL x6 */
623 		else if ((fdiv >= 850000) && (fdiv <= 1200000))
624 			max310x_try_cfg(fdiv, div, 48, &cfg);  /* PLL x48 */
625 
626 		if ((fdiv >= 425000) && (fdiv <= 1000000))
627 			max310x_try_cfg(fdiv, div, 96, &cfg);  /* PLL x96 */
628 
629 		if ((fdiv >= 390000) && (fdiv <= 667000))
630 			max310x_try_cfg(fdiv, div, 144, &cfg); /* PLL x144 */
631 	}
632 
633 	/* Configure clock source */
634 	clksrc = MAX310X_CLKSRC_EXTCLK_BIT | (xtal ? MAX310X_CLKSRC_CRYST_BIT : 0);
635 
636 	/* Configure PLL */
637 	if (cfg.prediv) {
638 		u8 pll_id = max310x_pll_mult_to_id(cfg.pll_mult);
639 
640 		clksrc |= MAX310X_CLKSRC_PLL_BIT;
641 		val = FIELD_PREP(MAX310X_PLLCFG_PLLFACTOR_MASK, pll_id) |
642 			FIELD_PREP(MAX310X_PLLCFG_PREDIV_MASK, cfg.prediv);
643 		regmap_write(s->regmap, MAX310X_PLLCFG_REG, val);
644 	} else
645 		clksrc |= MAX310X_CLKSRC_PLLBYP_BIT;
646 
647 	regmap_write(s->regmap, MAX310X_CLKSRC_REG, clksrc);
648 
649 	/* Wait for crystal */
650 	if (xtal) {
651 		int ret;
652 
653 		ret = regmap_read_poll_timeout(s->regmap, MAX310X_STS_IRQSTS_REG,
654 					       val, val & MAX310X_STS_CLKREADY_BIT,
655 					       MAX310X_XTAL_SLEEP_US,
656 					       MAX310X_XTAL_TIMEOUT_US);
657 		if (ret)
658 			return dev_err_probe(dev, -EAGAIN,
659 					     "clock is not stable\n");
660 	}
661 
662 	*fref = cfg.fref;
663 
664 	return 0;
665 }
666 
max310x_batch_write(struct uart_port * port,u8 * txbuf,unsigned int len)667 static void max310x_batch_write(struct uart_port *port, u8 *txbuf, unsigned int len)
668 {
669 	struct max310x_one *one = to_max310x_port(port);
670 
671 	regmap_noinc_write(one->regmap, MAX310X_THR_REG, txbuf, len);
672 }
673 
max310x_batch_read(struct uart_port * port,u8 * rxbuf,unsigned int len)674 static void max310x_batch_read(struct uart_port *port, u8 *rxbuf, unsigned int len)
675 {
676 	struct max310x_one *one = to_max310x_port(port);
677 
678 	regmap_noinc_read(one->regmap, MAX310X_RHR_REG, rxbuf, len);
679 }
680 
max310x_handle_rx(struct uart_port * port,unsigned int rxlen)681 static void max310x_handle_rx(struct uart_port *port, unsigned int rxlen)
682 {
683 	struct max310x_one *one = to_max310x_port(port);
684 	unsigned int sts, i;
685 	u8 ch, flag;
686 
687 	if (port->read_status_mask == MAX310X_LSR_RXOVR_BIT) {
688 		/*
689 		 * We are just reading, happily ignoring any error conditions.
690 		 * Break condition, parity checking, framing errors -- they
691 		 * are all ignored. That means that we can do a batch-read.
692 		 *
693 		 * There is a small opportunity for race if the RX FIFO
694 		 * overruns while we're reading the buffer; the datasheets says
695 		 * that the LSR register applies to the "current" character.
696 		 * That's also the reason why we cannot do batched reads when
697 		 * asked to check the individual statuses.
698 		 */
699 
700 		sts = max310x_port_read(port, MAX310X_LSR_IRQSTS_REG);
701 		max310x_batch_read(port, one->rx_buf, rxlen);
702 
703 		port->icount.rx += rxlen;
704 		flag = TTY_NORMAL;
705 		sts &= port->read_status_mask;
706 
707 		if (sts & MAX310X_LSR_RXOVR_BIT) {
708 			dev_warn_ratelimited(port->dev, "Hardware RX FIFO overrun\n");
709 			port->icount.overrun++;
710 		}
711 
712 		for (i = 0; i < (rxlen - 1); ++i)
713 			uart_insert_char(port, sts, 0, one->rx_buf[i], flag);
714 
715 		/*
716 		 * Handle the overrun case for the last character only, since
717 		 * the RxFIFO overflow happens after it is pushed to the FIFO
718 		 * tail.
719 		 */
720 		uart_insert_char(port, sts, MAX310X_LSR_RXOVR_BIT,
721 				 one->rx_buf[rxlen-1], flag);
722 
723 	} else {
724 		if (unlikely(rxlen >= port->fifosize)) {
725 			dev_warn_ratelimited(port->dev, "Possible RX FIFO overrun\n");
726 			port->icount.buf_overrun++;
727 			/* Ensure sanity of RX level */
728 			rxlen = port->fifosize;
729 		}
730 
731 		while (rxlen--) {
732 			ch = max310x_port_read(port, MAX310X_RHR_REG);
733 			sts = max310x_port_read(port, MAX310X_LSR_IRQSTS_REG);
734 
735 			sts &= MAX310X_LSR_RXPAR_BIT | MAX310X_LSR_FRERR_BIT |
736 			       MAX310X_LSR_RXOVR_BIT | MAX310X_LSR_RXBRK_BIT;
737 
738 			port->icount.rx++;
739 			flag = TTY_NORMAL;
740 
741 			if (unlikely(sts)) {
742 				if (sts & MAX310X_LSR_RXBRK_BIT) {
743 					port->icount.brk++;
744 					if (uart_handle_break(port))
745 						continue;
746 				} else if (sts & MAX310X_LSR_RXPAR_BIT)
747 					port->icount.parity++;
748 				else if (sts & MAX310X_LSR_FRERR_BIT)
749 					port->icount.frame++;
750 				else if (sts & MAX310X_LSR_RXOVR_BIT)
751 					port->icount.overrun++;
752 
753 				sts &= port->read_status_mask;
754 				if (sts & MAX310X_LSR_RXBRK_BIT)
755 					flag = TTY_BREAK;
756 				else if (sts & MAX310X_LSR_RXPAR_BIT)
757 					flag = TTY_PARITY;
758 				else if (sts & MAX310X_LSR_FRERR_BIT)
759 					flag = TTY_FRAME;
760 				else if (sts & MAX310X_LSR_RXOVR_BIT)
761 					flag = TTY_OVERRUN;
762 			}
763 
764 			if (uart_handle_sysrq_char(port, ch))
765 				continue;
766 
767 			if (sts & port->ignore_status_mask)
768 				continue;
769 
770 			uart_insert_char(port, sts, MAX310X_LSR_RXOVR_BIT, ch, flag);
771 		}
772 	}
773 
774 	tty_flip_buffer_push(&port->state->port);
775 }
776 
max310x_handle_tx(struct uart_port * port)777 static void max310x_handle_tx(struct uart_port *port)
778 {
779 	struct tty_port *tport = &port->state->port;
780 
781 	if (unlikely(port->x_char)) {
782 		max310x_port_write(port, MAX310X_THR_REG, port->x_char);
783 		port->icount.tx++;
784 		port->x_char = 0;
785 		return;
786 	}
787 
788 	if (kfifo_is_empty(&tport->xmit_fifo) || uart_tx_stopped(port))
789 		return;
790 
791 	/*
792 	 * It's a circ buffer -- wrap around.
793 	 * We could do that in one SPI transaction, but meh.
794 	 */
795 	while (!kfifo_is_empty(&tport->xmit_fifo)) {
796 		unsigned int txlen, to_send;
797 		unsigned char *tail;
798 
799 		/* Limit to space available in TX FIFO */
800 		txlen = max310x_port_read(port, MAX310X_TXFIFOLVL_REG);
801 		txlen = port->fifosize - txlen;
802 		if (!txlen)
803 			break;
804 
805 		to_send = kfifo_out_linear_ptr(&tport->xmit_fifo, &tail, txlen);
806 		max310x_batch_write(port, tail, to_send);
807 		uart_xmit_advance(port, to_send);
808 	}
809 
810 	if (kfifo_len(&tport->xmit_fifo) < WAKEUP_CHARS)
811 		uart_write_wakeup(port);
812 }
813 
max310x_start_tx(struct uart_port * port)814 static void max310x_start_tx(struct uart_port *port)
815 {
816 	struct max310x_one *one = to_max310x_port(port);
817 
818 	schedule_work(&one->tx_work);
819 }
820 
max310x_port_irq(struct max310x_port * s,int portno)821 static irqreturn_t max310x_port_irq(struct max310x_port *s, int portno)
822 {
823 	struct uart_port *port = &s->p[portno].port;
824 	irqreturn_t res = IRQ_NONE;
825 
826 	do {
827 		unsigned int ists, lsr, rxlen;
828 
829 		/* Read IRQ status & RX FIFO level */
830 		ists = max310x_port_read(port, MAX310X_IRQSTS_REG);
831 		rxlen = max310x_port_read(port, MAX310X_RXFIFOLVL_REG);
832 		if (!ists && !rxlen)
833 			break;
834 
835 		res = IRQ_HANDLED;
836 
837 		if (ists & MAX310X_IRQ_CTS_BIT) {
838 			lsr = max310x_port_read(port, MAX310X_LSR_IRQSTS_REG);
839 			uart_handle_cts_change(port, lsr & MAX310X_LSR_CTS_BIT);
840 		}
841 		if (rxlen)
842 			max310x_handle_rx(port, rxlen);
843 		if (ists & MAX310X_IRQ_TXEMPTY_BIT)
844 			max310x_start_tx(port);
845 	} while (1);
846 
847 	return res;
848 }
849 
max310x_ist(int irq,void * dev_id)850 static irqreturn_t max310x_ist(int irq, void *dev_id)
851 {
852 	struct max310x_port *s = (struct max310x_port *)dev_id;
853 	bool handled = false;
854 
855 	if (s->devtype->nr > 1) {
856 		bool done;
857 
858 		do {
859 			unsigned int val = ~0;
860 			unsigned long irq;
861 			unsigned int port;
862 
863 			done = true;
864 
865 			WARN_ON_ONCE(regmap_read(s->regmap,
866 						 MAX310X_GLOBALIRQ_REG, &val));
867 
868 			irq = val;
869 
870 			for_each_clear_bit(port, &irq, s->devtype->nr) {
871 				done = false;
872 
873 				if (max310x_port_irq(s, port) == IRQ_HANDLED)
874 					handled = true;
875 			}
876 
877 		} while (!done);
878 	} else {
879 		if (max310x_port_irq(s, 0) == IRQ_HANDLED)
880 			handled = true;
881 	}
882 
883 	return IRQ_RETVAL(handled);
884 }
885 
max310x_tx_proc(struct work_struct * ws)886 static void max310x_tx_proc(struct work_struct *ws)
887 {
888 	struct max310x_one *one = container_of(ws, struct max310x_one, tx_work);
889 
890 	max310x_handle_tx(&one->port);
891 }
892 
max310x_tx_empty(struct uart_port * port)893 static unsigned int max310x_tx_empty(struct uart_port *port)
894 {
895 	u8 lvl = max310x_port_read(port, MAX310X_TXFIFOLVL_REG);
896 
897 	return lvl ? 0 : TIOCSER_TEMT;
898 }
899 
max310x_get_mctrl(struct uart_port * port)900 static unsigned int max310x_get_mctrl(struct uart_port *port)
901 {
902 	/*
903 	 * DCD and DSR are not wired and CTS/RTS is handled automatically
904 	 * so just indicate DSR and CAR asserted
905 	 */
906 	return TIOCM_DSR | TIOCM_CAR;
907 }
908 
max310x_md_proc(struct work_struct * ws)909 static void max310x_md_proc(struct work_struct *ws)
910 {
911 	struct max310x_one *one = container_of(ws, struct max310x_one, md_work);
912 
913 	max310x_port_update(&one->port, MAX310X_MODE2_REG,
914 			    MAX310X_MODE2_LOOPBACK_BIT,
915 			    (one->port.mctrl & TIOCM_LOOP) ?
916 			    MAX310X_MODE2_LOOPBACK_BIT : 0);
917 }
918 
max310x_set_mctrl(struct uart_port * port,unsigned int mctrl)919 static void max310x_set_mctrl(struct uart_port *port, unsigned int mctrl)
920 {
921 	struct max310x_one *one = to_max310x_port(port);
922 
923 	schedule_work(&one->md_work);
924 }
925 
max310x_break_ctl(struct uart_port * port,int break_state)926 static void max310x_break_ctl(struct uart_port *port, int break_state)
927 {
928 	max310x_port_update(port, MAX310X_LCR_REG,
929 			    MAX310X_LCR_TXBREAK_BIT,
930 			    break_state ? MAX310X_LCR_TXBREAK_BIT : 0);
931 }
932 
max310x_set_termios(struct uart_port * port,struct ktermios * termios,const struct ktermios * old)933 static void max310x_set_termios(struct uart_port *port,
934 				struct ktermios *termios,
935 				const struct ktermios *old)
936 {
937 	unsigned int lcr = 0, flow = 0;
938 	int baud;
939 
940 	/* Mask termios capabilities we don't support */
941 	termios->c_cflag &= ~CMSPAR;
942 
943 	/* Word size */
944 	switch (termios->c_cflag & CSIZE) {
945 	case CS5:
946 		break;
947 	case CS6:
948 		lcr = MAX310X_LCR_LENGTH0_BIT;
949 		break;
950 	case CS7:
951 		lcr = MAX310X_LCR_LENGTH1_BIT;
952 		break;
953 	case CS8:
954 	default:
955 		lcr = MAX310X_LCR_LENGTH1_BIT | MAX310X_LCR_LENGTH0_BIT;
956 		break;
957 	}
958 
959 	/* Parity */
960 	if (termios->c_cflag & PARENB) {
961 		lcr |= MAX310X_LCR_PARITY_BIT;
962 		if (!(termios->c_cflag & PARODD))
963 			lcr |= MAX310X_LCR_EVENPARITY_BIT;
964 	}
965 
966 	/* Stop bits */
967 	if (termios->c_cflag & CSTOPB)
968 		lcr |= MAX310X_LCR_STOPLEN_BIT; /* 2 stops */
969 
970 	/* Update LCR register */
971 	max310x_port_write(port, MAX310X_LCR_REG, lcr);
972 
973 	/* Set read status mask */
974 	port->read_status_mask = MAX310X_LSR_RXOVR_BIT;
975 	if (termios->c_iflag & INPCK)
976 		port->read_status_mask |= MAX310X_LSR_RXPAR_BIT |
977 					  MAX310X_LSR_FRERR_BIT;
978 	if (termios->c_iflag & (IGNBRK | BRKINT | PARMRK))
979 		port->read_status_mask |= MAX310X_LSR_RXBRK_BIT;
980 
981 	/* Set status ignore mask */
982 	port->ignore_status_mask = 0;
983 	if (termios->c_iflag & IGNBRK)
984 		port->ignore_status_mask |= MAX310X_LSR_RXBRK_BIT;
985 	if (!(termios->c_cflag & CREAD))
986 		port->ignore_status_mask |= MAX310X_LSR_RXPAR_BIT |
987 					    MAX310X_LSR_RXOVR_BIT |
988 					    MAX310X_LSR_FRERR_BIT |
989 					    MAX310X_LSR_RXBRK_BIT;
990 
991 	/* Configure flow control */
992 	max310x_port_write(port, MAX310X_XON1_REG, termios->c_cc[VSTART]);
993 	max310x_port_write(port, MAX310X_XOFF1_REG, termios->c_cc[VSTOP]);
994 
995 	/*
996 	 * Disable transmitter before enabling AutoCTS or auto transmitter
997 	 * flow control
998 	 */
999 	if (termios->c_cflag & CRTSCTS || termios->c_iflag & IXOFF) {
1000 		max310x_port_update(port, MAX310X_MODE1_REG,
1001 				    MAX310X_MODE1_TXDIS_BIT,
1002 				    MAX310X_MODE1_TXDIS_BIT);
1003 	}
1004 
1005 	port->status &= ~(UPSTAT_AUTOCTS | UPSTAT_AUTORTS | UPSTAT_AUTOXOFF);
1006 
1007 	if (termios->c_cflag & CRTSCTS) {
1008 		/* Enable AUTORTS and AUTOCTS */
1009 		port->status |= UPSTAT_AUTOCTS | UPSTAT_AUTORTS;
1010 		flow |= MAX310X_FLOWCTRL_AUTOCTS_BIT |
1011 			MAX310X_FLOWCTRL_AUTORTS_BIT;
1012 	}
1013 	if (termios->c_iflag & IXON)
1014 		flow |= MAX310X_FLOWCTRL_SWFLOW3_BIT |
1015 			MAX310X_FLOWCTRL_SWFLOWEN_BIT;
1016 	if (termios->c_iflag & IXOFF) {
1017 		port->status |= UPSTAT_AUTOXOFF;
1018 		flow |= MAX310X_FLOWCTRL_SWFLOW1_BIT |
1019 			MAX310X_FLOWCTRL_SWFLOWEN_BIT;
1020 	}
1021 	max310x_port_write(port, MAX310X_FLOWCTRL_REG, flow);
1022 
1023 	/*
1024 	 * Enable transmitter after disabling AutoCTS and auto transmitter
1025 	 * flow control
1026 	 */
1027 	if (!(termios->c_cflag & CRTSCTS) && !(termios->c_iflag & IXOFF)) {
1028 		max310x_port_update(port, MAX310X_MODE1_REG,
1029 				    MAX310X_MODE1_TXDIS_BIT,
1030 				    0);
1031 	}
1032 
1033 	/* Get baud rate generator configuration */
1034 	baud = uart_get_baud_rate(port, termios, old,
1035 				  port->uartclk / 16 / 0xffff,
1036 				  port->uartclk / 4);
1037 
1038 	/* Setup baudrate generator */
1039 	baud = max310x_set_baud(port, baud);
1040 
1041 	/* Update timeout according to new baud rate */
1042 	uart_update_timeout(port, termios->c_cflag, baud);
1043 }
1044 
max310x_rs_proc(struct work_struct * ws)1045 static void max310x_rs_proc(struct work_struct *ws)
1046 {
1047 	struct max310x_one *one = container_of(ws, struct max310x_one, rs_work);
1048 	unsigned int delay, mode1 = 0, mode2 = 0;
1049 
1050 	delay = (one->port.rs485.delay_rts_before_send << 4) |
1051 		one->port.rs485.delay_rts_after_send;
1052 	max310x_port_write(&one->port, MAX310X_HDPIXDELAY_REG, delay);
1053 
1054 	if (one->port.rs485.flags & SER_RS485_ENABLED) {
1055 		mode1 = MAX310X_MODE1_TRNSCVCTRL_BIT;
1056 
1057 		if (!(one->port.rs485.flags & SER_RS485_RX_DURING_TX))
1058 			mode2 = MAX310X_MODE2_ECHOSUPR_BIT;
1059 	}
1060 
1061 	max310x_port_update(&one->port, MAX310X_MODE1_REG,
1062 			MAX310X_MODE1_TRNSCVCTRL_BIT, mode1);
1063 	max310x_port_update(&one->port, MAX310X_MODE2_REG,
1064 			MAX310X_MODE2_ECHOSUPR_BIT, mode2);
1065 }
1066 
max310x_rs485_config(struct uart_port * port,struct ktermios * termios,struct serial_rs485 * rs485)1067 static int max310x_rs485_config(struct uart_port *port, struct ktermios *termios,
1068 				struct serial_rs485 *rs485)
1069 {
1070 	struct max310x_one *one = to_max310x_port(port);
1071 
1072 	if ((rs485->delay_rts_before_send > 0x0f) ||
1073 	    (rs485->delay_rts_after_send > 0x0f))
1074 		return -ERANGE;
1075 
1076 	port->rs485 = *rs485;
1077 
1078 	schedule_work(&one->rs_work);
1079 
1080 	return 0;
1081 }
1082 
max310x_startup(struct uart_port * port)1083 static int max310x_startup(struct uart_port *port)
1084 {
1085 	unsigned int val;
1086 
1087 	max310x_power(port, 1);
1088 
1089 	/* Configure MODE1 register */
1090 	max310x_port_update(port, MAX310X_MODE1_REG,
1091 			    MAX310X_MODE1_TRNSCVCTRL_BIT, 0);
1092 
1093 	/* Configure MODE2 register & Reset FIFOs*/
1094 	val = MAX310X_MODE2_RXEMPTINV_BIT | MAX310X_MODE2_FIFORST_BIT;
1095 	max310x_port_write(port, MAX310X_MODE2_REG, val);
1096 	max310x_port_update(port, MAX310X_MODE2_REG,
1097 			    MAX310X_MODE2_FIFORST_BIT, 0);
1098 
1099 	/* Configure mode1/mode2 to have rs485/rs232 enabled at startup */
1100 	val = (clamp(port->rs485.delay_rts_before_send, 0U, 15U) << 4) |
1101 		clamp(port->rs485.delay_rts_after_send, 0U, 15U);
1102 	max310x_port_write(port, MAX310X_HDPIXDELAY_REG, val);
1103 
1104 	if (port->rs485.flags & SER_RS485_ENABLED) {
1105 		max310x_port_update(port, MAX310X_MODE1_REG,
1106 				    MAX310X_MODE1_TRNSCVCTRL_BIT,
1107 				    MAX310X_MODE1_TRNSCVCTRL_BIT);
1108 
1109 		if (!(port->rs485.flags & SER_RS485_RX_DURING_TX))
1110 			max310x_port_update(port, MAX310X_MODE2_REG,
1111 					    MAX310X_MODE2_ECHOSUPR_BIT,
1112 					    MAX310X_MODE2_ECHOSUPR_BIT);
1113 	}
1114 
1115 	/*
1116 	 * Configure flow control levels:
1117 	 *   resume: 48
1118 	 *   halt:   96
1119 	 */
1120 	max310x_port_write(port, MAX310X_FLOWLVL_REG,
1121 			   MAX310X_FLOWLVL_RES(48) | MAX310X_FLOWLVL_HALT(96));
1122 
1123 	/* Clear IRQ status register */
1124 	max310x_port_read(port, MAX310X_IRQSTS_REG);
1125 
1126 	/* Enable RX, TX, CTS change interrupts */
1127 	val = MAX310X_IRQ_RXEMPTY_BIT | MAX310X_IRQ_TXEMPTY_BIT;
1128 	max310x_port_write(port, MAX310X_IRQEN_REG, val | MAX310X_IRQ_CTS_BIT);
1129 
1130 	return 0;
1131 }
1132 
max310x_shutdown(struct uart_port * port)1133 static void max310x_shutdown(struct uart_port *port)
1134 {
1135 	/* Disable all interrupts */
1136 	max310x_port_write(port, MAX310X_IRQEN_REG, 0);
1137 
1138 	max310x_power(port, 0);
1139 }
1140 
max310x_type(struct uart_port * port)1141 static const char *max310x_type(struct uart_port *port)
1142 {
1143 	struct max310x_port *s = dev_get_drvdata(port->dev);
1144 
1145 	return (port->type == PORT_MAX310X) ? s->devtype->name : NULL;
1146 }
1147 
max310x_request_port(struct uart_port * port)1148 static int max310x_request_port(struct uart_port *port)
1149 {
1150 	/* Do nothing */
1151 	return 0;
1152 }
1153 
max310x_config_port(struct uart_port * port,int flags)1154 static void max310x_config_port(struct uart_port *port, int flags)
1155 {
1156 	if (flags & UART_CONFIG_TYPE)
1157 		port->type = PORT_MAX310X;
1158 }
1159 
max310x_verify_port(struct uart_port * port,struct serial_struct * s)1160 static int max310x_verify_port(struct uart_port *port, struct serial_struct *s)
1161 {
1162 	if ((s->type != PORT_UNKNOWN) && (s->type != PORT_MAX310X))
1163 		return -EINVAL;
1164 	if (s->irq != port->irq)
1165 		return -EINVAL;
1166 
1167 	return 0;
1168 }
1169 
max310x_null_void(struct uart_port * port)1170 static void max310x_null_void(struct uart_port *port)
1171 {
1172 	/* Do nothing */
1173 }
1174 
1175 static const struct uart_ops max310x_ops = {
1176 	.tx_empty	= max310x_tx_empty,
1177 	.set_mctrl	= max310x_set_mctrl,
1178 	.get_mctrl	= max310x_get_mctrl,
1179 	.stop_tx	= max310x_null_void,
1180 	.start_tx	= max310x_start_tx,
1181 	.stop_rx	= max310x_null_void,
1182 	.break_ctl	= max310x_break_ctl,
1183 	.startup	= max310x_startup,
1184 	.shutdown	= max310x_shutdown,
1185 	.set_termios	= max310x_set_termios,
1186 	.type		= max310x_type,
1187 	.request_port	= max310x_request_port,
1188 	.release_port	= max310x_null_void,
1189 	.config_port	= max310x_config_port,
1190 	.verify_port	= max310x_verify_port,
1191 };
1192 
max310x_suspend(struct device * dev)1193 static int __maybe_unused max310x_suspend(struct device *dev)
1194 {
1195 	struct max310x_port *s = dev_get_drvdata(dev);
1196 	int i;
1197 
1198 	for (i = 0; i < s->devtype->nr; i++) {
1199 		uart_suspend_port(&max310x_uart, &s->p[i].port);
1200 		max310x_power(&s->p[i].port, 0);
1201 	}
1202 
1203 	return 0;
1204 }
1205 
max310x_resume(struct device * dev)1206 static int __maybe_unused max310x_resume(struct device *dev)
1207 {
1208 	struct max310x_port *s = dev_get_drvdata(dev);
1209 	int i;
1210 
1211 	for (i = 0; i < s->devtype->nr; i++) {
1212 		max310x_power(&s->p[i].port, 1);
1213 		uart_resume_port(&max310x_uart, &s->p[i].port);
1214 	}
1215 
1216 	return 0;
1217 }
1218 
1219 static SIMPLE_DEV_PM_OPS(max310x_pm_ops, max310x_suspend, max310x_resume);
1220 
1221 #ifdef CONFIG_GPIOLIB
max310x_gpio_get(struct gpio_chip * chip,unsigned int offset)1222 static int max310x_gpio_get(struct gpio_chip *chip, unsigned int offset)
1223 {
1224 	unsigned int val;
1225 	struct max310x_port *s = gpiochip_get_data(chip);
1226 	struct uart_port *port = &s->p[offset / 4].port;
1227 
1228 	val = max310x_port_read(port, MAX310X_GPIODATA_REG);
1229 
1230 	return !!((val >> 4) & (1 << (offset % 4)));
1231 }
1232 
max310x_gpio_set(struct gpio_chip * chip,unsigned int offset,int value)1233 static int max310x_gpio_set(struct gpio_chip *chip, unsigned int offset,
1234 			    int value)
1235 {
1236 	struct max310x_port *s = gpiochip_get_data(chip);
1237 	struct uart_port *port = &s->p[offset / 4].port;
1238 
1239 	max310x_port_update(port, MAX310X_GPIODATA_REG, 1 << (offset % 4),
1240 			    value ? 1 << (offset % 4) : 0);
1241 
1242 	return 0;
1243 }
1244 
max310x_gpio_get_direction(struct gpio_chip * chip,unsigned int offset)1245 static int max310x_gpio_get_direction(struct gpio_chip *chip, unsigned int offset)
1246 {
1247 	struct max310x_port *s = gpiochip_get_data(chip);
1248 	struct uart_port *port = &s->p[offset / 4].port;
1249 	unsigned int val;
1250 
1251 	val = max310x_port_read(port, MAX310X_GPIOCFG_REG);
1252 
1253 	return val & BIT(offset % 4) ? GPIO_LINE_DIRECTION_OUT : GPIO_LINE_DIRECTION_IN;
1254 }
1255 
max310x_gpio_direction_input(struct gpio_chip * chip,unsigned int offset)1256 static int max310x_gpio_direction_input(struct gpio_chip *chip, unsigned int offset)
1257 {
1258 	struct max310x_port *s = gpiochip_get_data(chip);
1259 	struct uart_port *port = &s->p[offset / 4].port;
1260 
1261 	max310x_port_update(port, MAX310X_GPIOCFG_REG, 1 << (offset % 4), 0);
1262 
1263 	return 0;
1264 }
1265 
max310x_gpio_direction_output(struct gpio_chip * chip,unsigned int offset,int value)1266 static int max310x_gpio_direction_output(struct gpio_chip *chip,
1267 					 unsigned int offset, int value)
1268 {
1269 	struct max310x_port *s = gpiochip_get_data(chip);
1270 	struct uart_port *port = &s->p[offset / 4].port;
1271 
1272 	max310x_port_update(port, MAX310X_GPIODATA_REG, 1 << (offset % 4),
1273 			    value ? 1 << (offset % 4) : 0);
1274 	max310x_port_update(port, MAX310X_GPIOCFG_REG, 1 << (offset % 4),
1275 			    1 << (offset % 4));
1276 
1277 	return 0;
1278 }
1279 
max310x_gpio_set_config(struct gpio_chip * chip,unsigned int offset,unsigned long config)1280 static int max310x_gpio_set_config(struct gpio_chip *chip, unsigned int offset,
1281 				   unsigned long config)
1282 {
1283 	struct max310x_port *s = gpiochip_get_data(chip);
1284 	struct uart_port *port = &s->p[offset / 4].port;
1285 
1286 	switch (pinconf_to_config_param(config)) {
1287 	case PIN_CONFIG_DRIVE_OPEN_DRAIN:
1288 		max310x_port_update(port, MAX310X_GPIOCFG_REG,
1289 				1 << ((offset % 4) + 4),
1290 				1 << ((offset % 4) + 4));
1291 		return 0;
1292 	case PIN_CONFIG_DRIVE_PUSH_PULL:
1293 		max310x_port_update(port, MAX310X_GPIOCFG_REG,
1294 				1 << ((offset % 4) + 4), 0);
1295 		return 0;
1296 	default:
1297 		return -ENOTSUPP;
1298 	}
1299 }
1300 #endif
1301 
1302 static const struct serial_rs485 max310x_rs485_supported = {
1303 	.flags = SER_RS485_ENABLED | SER_RS485_RTS_ON_SEND | SER_RS485_RX_DURING_TX,
1304 	.delay_rts_before_send = 1,
1305 	.delay_rts_after_send = 1,
1306 };
1307 
max310x_probe(struct device * dev,const struct max310x_devtype * devtype,const struct max310x_if_cfg * if_cfg,struct regmap * regmaps[],int irq)1308 static int max310x_probe(struct device *dev, const struct max310x_devtype *devtype,
1309 			 const struct max310x_if_cfg *if_cfg,
1310 			 struct regmap *regmaps[], int irq)
1311 {
1312 	unsigned int fmin, fmax, freq;
1313 	int i, ret;
1314 	struct max310x_port *s;
1315 	unsigned int uartclk = 0;
1316 	bool xtal;
1317 
1318 	for (i = 0; i < devtype->nr; i++)
1319 		if (IS_ERR(regmaps[i]))
1320 			return PTR_ERR(regmaps[i]);
1321 
1322 	/* Alloc port structure */
1323 	s = devm_kzalloc(dev, struct_size(s, p, devtype->nr), GFP_KERNEL);
1324 	if (!s)
1325 		return -ENOMEM;
1326 
1327 	/* Always ask for fixed clock rate from a property. */
1328 	device_property_read_u32(dev, "clock-frequency", &uartclk);
1329 
1330 	xtal = device_property_match_string(dev, "clock-names", "osc") < 0;
1331 	if (xtal)
1332 		s->clk = devm_clk_get_optional(dev, "xtal");
1333 	else
1334 		s->clk = devm_clk_get_optional(dev, "osc");
1335 	if (IS_ERR(s->clk))
1336 		return PTR_ERR(s->clk);
1337 
1338 	ret = clk_prepare_enable(s->clk);
1339 	if (ret)
1340 		return ret;
1341 
1342 	freq = clk_get_rate(s->clk);
1343 	if (freq == 0)
1344 		freq = uartclk;
1345 	if (freq == 0) {
1346 		ret = dev_err_probe(dev, -EINVAL, "Cannot get clock rate\n");
1347 		goto out_clk;
1348 	}
1349 
1350 	if (xtal) {
1351 		fmin = 1000000;
1352 		fmax = 4000000;
1353 	} else {
1354 		fmin = 500000;
1355 		fmax = 35000000;
1356 	}
1357 
1358 	/* Check frequency limits */
1359 	if (freq < fmin || freq > fmax) {
1360 		ret = -ERANGE;
1361 		goto out_clk;
1362 	}
1363 
1364 	s->regmap = regmaps[0];
1365 	s->devtype = devtype;
1366 	s->if_cfg = if_cfg;
1367 	dev_set_drvdata(dev, s);
1368 
1369 	/* Check device to ensure we are talking to what we expect */
1370 	ret = max310x_detect(dev);
1371 	if (ret)
1372 		goto out_clk;
1373 
1374 	for (i = 0; i < devtype->nr; i++) {
1375 		unsigned int val;
1376 
1377 		/* Reset port */
1378 		regmap_write(regmaps[i], MAX310X_MODE2_REG,
1379 			     MAX310X_MODE2_RST_BIT);
1380 		/* Clear port reset */
1381 		regmap_write(regmaps[i], MAX310X_MODE2_REG, 0);
1382 
1383 		/* Wait for port startup */
1384 		ret = regmap_read_poll_timeout(regmaps[i], MAX310X_BRGDIVLSB_REG,
1385 					       val, val == 0x01,
1386 					       MAX310X_PORT_STARTUP_SLEEP_US,
1387 					       MAX310X_PORT_STARTUP_TIMEOUT_US);
1388 		if (ret) {
1389 			ret = dev_err_probe(dev, -EAGAIN, "port reset failed\n");
1390 			goto out_uart;
1391 		}
1392 
1393 		regmap_write(regmaps[i], MAX310X_MODE1_REG, devtype->mode1);
1394 	}
1395 
1396 	ret = max310x_set_ref_clk(dev, s, freq, &uartclk, xtal);
1397 	if (ret < 0)
1398 		goto out_uart;
1399 
1400 	dev_dbg(dev, "Reference clock set to %i Hz\n", uartclk);
1401 
1402 	/*
1403 	 * Set up each port's state before registering the gpiochip,
1404 	 * since the gpiochip callbacks will read s->p[i].regmap as
1405 	 * soon as gpiolib exposes the controller.
1406 	 */
1407 	for (i = 0; i < devtype->nr; i++) {
1408 		s->p[i].port.dev	= dev;
1409 		s->p[i].port.irq	= irq;
1410 		s->p[i].port.type	= PORT_MAX310X;
1411 		s->p[i].port.fifosize	= MAX310X_FIFO_SIZE;
1412 		s->p[i].port.flags	= UPF_FIXED_TYPE | UPF_LOW_LATENCY;
1413 		s->p[i].port.iotype	= UPIO_BUS;
1414 		s->p[i].port.uartclk	= uartclk;
1415 		s->p[i].port.rs485_config = max310x_rs485_config;
1416 		s->p[i].port.rs485_supported = max310x_rs485_supported;
1417 		s->p[i].port.ops	= &max310x_ops;
1418 		s->p[i].regmap		= regmaps[i];
1419 
1420 		/* Disable all interrupts */
1421 		max310x_port_write(&s->p[i].port, MAX310X_IRQEN_REG, 0);
1422 		/* Clear IRQ status register */
1423 		max310x_port_read(&s->p[i].port, MAX310X_IRQSTS_REG);
1424 		/* Initialize queue for start TX */
1425 		INIT_WORK(&s->p[i].tx_work, max310x_tx_proc);
1426 		/* Initialize queue for changing LOOPBACK mode */
1427 		INIT_WORK(&s->p[i].md_work, max310x_md_proc);
1428 		/* Initialize queue for changing RS485 mode */
1429 		INIT_WORK(&s->p[i].rs_work, max310x_rs_proc);
1430 	}
1431 
1432 #ifdef CONFIG_GPIOLIB
1433 	/*
1434 	 * Register the GPIO controller before adding the UART ports so
1435 	 * that consumers referencing the chip's own GPIOs from device
1436 	 * tree (for example rs485-term-gpios = <&max310x ...>) can
1437 	 * resolve them at uart_add_one_port() time instead of receiving
1438 	 * -EPROBE_DEFER from their own provider.
1439 	 */
1440 	s->gpio.owner		= THIS_MODULE;
1441 	s->gpio.parent		= dev;
1442 	s->gpio.label		= devtype->name;
1443 	s->gpio.get_direction	= max310x_gpio_get_direction;
1444 	s->gpio.direction_input	= max310x_gpio_direction_input;
1445 	s->gpio.get		= max310x_gpio_get;
1446 	s->gpio.direction_output= max310x_gpio_direction_output;
1447 	s->gpio.set		= max310x_gpio_set;
1448 	s->gpio.set_config	= max310x_gpio_set_config;
1449 	s->gpio.base		= -1;
1450 	s->gpio.ngpio		= devtype->nr * 4;
1451 	s->gpio.can_sleep	= 1;
1452 	ret = devm_gpiochip_add_data(dev, &s->gpio, s);
1453 	if (ret)
1454 		goto out_uart;
1455 #endif
1456 
1457 	for (i = 0; i < devtype->nr; i++) {
1458 		struct fwnode_handle *saved_fwnode = dev_fwnode(dev);
1459 		struct device_node *port_np = NULL;
1460 		struct device_node *child;
1461 		unsigned int line;
1462 
1463 		line = find_first_zero_bit(max310x_lines, MAX310X_UART_NRMAX);
1464 		if (line == MAX310X_UART_NRMAX) {
1465 			ret = -ERANGE;
1466 			goto out_uart;
1467 		}
1468 		s->p[i].port.line = line;
1469 
1470 		/* Locate the matching "serial@i" DT subnode, if any. */
1471 		for_each_available_child_of_node(dev->of_node, child) {
1472 			u32 reg;
1473 
1474 			if (!of_node_name_eq(child, "serial"))
1475 				continue;
1476 			if (of_property_read_u32(child, "reg", &reg))
1477 				continue;
1478 			if (reg == i) {
1479 				port_np = child;
1480 				break;
1481 			}
1482 		}
1483 
1484 		/*
1485 		 * Temporarily retarget dev's fwnode to the per-port subnode
1486 		 * so uart_get_rs485_mode() picks up the per-port properties.
1487 		 * For single-port variants, fall back to the chip's own
1488 		 * fwnode so legacy DTs that declare rs485 properties at the
1489 		 * top level keep working.
1490 		 */
1491 		if (port_np) {
1492 			device_set_node(dev, of_fwnode_handle(port_np));
1493 			ret = uart_get_rs485_mode(&s->p[i].port);
1494 			device_set_node(dev, saved_fwnode);
1495 			of_node_put(port_np);
1496 			if (ret)
1497 				goto out_uart;
1498 		} else if (devtype->nr == 1) {
1499 			ret = uart_get_rs485_mode(&s->p[i].port);
1500 			if (ret)
1501 				goto out_uart;
1502 		}
1503 
1504 		/* Register port */
1505 		ret = uart_add_one_port(&max310x_uart, &s->p[i].port);
1506 		if (ret)
1507 			goto out_uart;
1508 
1509 		set_bit(line, max310x_lines);
1510 
1511 		/* Go to suspend mode */
1512 		max310x_power(&s->p[i].port, 0);
1513 	}
1514 
1515 	/* Setup interrupt */
1516 	ret = devm_request_threaded_irq(dev, irq, NULL, max310x_ist,
1517 					IRQF_ONESHOT | IRQF_SHARED, dev_name(dev), s);
1518 	if (!ret)
1519 		return 0;
1520 
1521 	dev_err(dev, "Unable to request IRQ %i\n", irq);
1522 
1523 out_uart:
1524 	for (i = 0; i < devtype->nr; i++) {
1525 		if (test_and_clear_bit(s->p[i].port.line, max310x_lines))
1526 			uart_remove_one_port(&max310x_uart, &s->p[i].port);
1527 	}
1528 
1529 out_clk:
1530 	clk_disable_unprepare(s->clk);
1531 
1532 	return ret;
1533 }
1534 
max310x_remove(struct device * dev)1535 static void max310x_remove(struct device *dev)
1536 {
1537 	struct max310x_port *s = dev_get_drvdata(dev);
1538 	int i;
1539 
1540 	for (i = 0; i < s->devtype->nr; i++) {
1541 		cancel_work_sync(&s->p[i].tx_work);
1542 		cancel_work_sync(&s->p[i].md_work);
1543 		cancel_work_sync(&s->p[i].rs_work);
1544 
1545 		if (test_and_clear_bit(s->p[i].port.line, max310x_lines))
1546 			uart_remove_one_port(&max310x_uart, &s->p[i].port);
1547 
1548 		max310x_power(&s->p[i].port, 0);
1549 	}
1550 
1551 	clk_disable_unprepare(s->clk);
1552 }
1553 
1554 static const struct of_device_id __maybe_unused max310x_dt_ids[] = {
1555 	{ .compatible = "maxim,max3107",	.data = &max3107_devtype, },
1556 	{ .compatible = "maxim,max3108",	.data = &max3108_devtype, },
1557 	{ .compatible = "maxim,max3109",	.data = &max3109_devtype, },
1558 	{ .compatible = "maxim,max14830",	.data = &max14830_devtype },
1559 	{ }
1560 };
1561 MODULE_DEVICE_TABLE(of, max310x_dt_ids);
1562 
max310x_regmap_name(u8 port_id)1563 static const char *max310x_regmap_name(u8 port_id)
1564 {
1565 	switch (port_id) {
1566 	case 0:	return "port0";
1567 	case 1:	return "port1";
1568 	case 2:	return "port2";
1569 	case 3:	return "port3";
1570 	default:
1571 		WARN_ON(true);
1572 		return NULL;
1573 	}
1574 }
1575 
1576 #if IS_ENABLED(CONFIG_SPI_MASTER)
1577 
1578 static struct regmap_config regcfg = {
1579 	.reg_bits = 8,
1580 	.val_bits = 8,
1581 	.write_flag_mask = MAX310X_WRITE_BIT,
1582 	.cache_type = REGCACHE_MAPLE,
1583 	.max_register = MAX310X_REG_1F,
1584 	.writeable_reg = max310x_reg_writeable,
1585 	.volatile_reg = max310x_reg_volatile,
1586 	.precious_reg = max310x_reg_precious,
1587 	.writeable_noinc_reg = max310x_reg_noinc,
1588 	.readable_noinc_reg = max310x_reg_noinc,
1589 	.max_raw_read = MAX310X_FIFO_SIZE,
1590 	.max_raw_write = MAX310X_FIFO_SIZE,
1591 };
1592 
max310x_spi_extended_reg_enable(struct device * dev,bool enable)1593 static int max310x_spi_extended_reg_enable(struct device *dev, bool enable)
1594 {
1595 	struct max310x_port *s = dev_get_drvdata(dev);
1596 
1597 	return regmap_write(s->regmap, MAX310X_GLOBALCMD_REG,
1598 			    enable ? MAX310X_EXTREG_ENBL : MAX310X_EXTREG_DSBL);
1599 }
1600 
1601 static const struct max310x_if_cfg __maybe_unused max310x_spi_if_cfg = {
1602 	.extended_reg_enable = max310x_spi_extended_reg_enable,
1603 	.rev_id_offset = MAX310X_EXTREG_START,
1604 };
1605 
max310x_spi_probe(struct spi_device * spi)1606 static int max310x_spi_probe(struct spi_device *spi)
1607 {
1608 	const struct max310x_devtype *devtype;
1609 	struct regmap *regmaps[MAX310X_MAX_PORTS];
1610 	unsigned int i;
1611 	int ret;
1612 
1613 	/* Setup SPI bus */
1614 	spi->bits_per_word	= 8;
1615 	spi->mode		= spi->mode ? : SPI_MODE_0;
1616 	spi->max_speed_hz	= spi->max_speed_hz ? : 26000000;
1617 	ret = spi_setup(spi);
1618 	if (ret)
1619 		return ret;
1620 
1621 	devtype = spi_get_device_match_data(spi);
1622 	if (!devtype)
1623 		return dev_err_probe(&spi->dev, -ENODEV, "Failed to match device\n");
1624 
1625 	for (i = 0; i < devtype->nr; i++) {
1626 		u8 port_mask = i * 0x20;
1627 
1628 		regcfg.name = max310x_regmap_name(i);
1629 		regcfg.read_flag_mask = port_mask;
1630 		regcfg.write_flag_mask = port_mask | MAX310X_WRITE_BIT;
1631 		regmaps[i] = devm_regmap_init_spi(spi, &regcfg);
1632 	}
1633 
1634 	return max310x_probe(&spi->dev, devtype, &max310x_spi_if_cfg, regmaps, spi->irq);
1635 }
1636 
max310x_spi_remove(struct spi_device * spi)1637 static void max310x_spi_remove(struct spi_device *spi)
1638 {
1639 	max310x_remove(&spi->dev);
1640 }
1641 
1642 static const struct spi_device_id max310x_id_table[] = {
1643 	{ "max3107",	(kernel_ulong_t)&max3107_devtype, },
1644 	{ "max3108",	(kernel_ulong_t)&max3108_devtype, },
1645 	{ "max3109",	(kernel_ulong_t)&max3109_devtype, },
1646 	{ "max14830",	(kernel_ulong_t)&max14830_devtype, },
1647 	{ }
1648 };
1649 MODULE_DEVICE_TABLE(spi, max310x_id_table);
1650 
1651 static struct spi_driver max310x_spi_driver = {
1652 	.driver = {
1653 		.name		= MAX310X_NAME,
1654 		.of_match_table	= max310x_dt_ids,
1655 		.pm		= &max310x_pm_ops,
1656 	},
1657 	.probe		= max310x_spi_probe,
1658 	.remove		= max310x_spi_remove,
1659 	.id_table	= max310x_id_table,
1660 };
1661 #endif
1662 
1663 #if IS_ENABLED(CONFIG_I2C)
1664 
max310x_i2c_extended_reg_enable(struct device * dev,bool enable)1665 static int max310x_i2c_extended_reg_enable(struct device *dev, bool enable)
1666 {
1667 	return 0;
1668 }
1669 
1670 static struct regmap_config regcfg_i2c = {
1671 	.reg_bits = 8,
1672 	.val_bits = 8,
1673 	.cache_type = REGCACHE_MAPLE,
1674 	.writeable_reg = max310x_reg_writeable,
1675 	.volatile_reg = max310x_reg_volatile,
1676 	.precious_reg = max310x_reg_precious,
1677 	.max_register = MAX310X_REVID_EXTREG,
1678 	.writeable_noinc_reg = max310x_reg_noinc,
1679 	.readable_noinc_reg = max310x_reg_noinc,
1680 	.max_raw_read = MAX310X_FIFO_SIZE,
1681 	.max_raw_write = MAX310X_FIFO_SIZE,
1682 };
1683 
1684 static const struct max310x_if_cfg max310x_i2c_if_cfg = {
1685 	.extended_reg_enable = max310x_i2c_extended_reg_enable,
1686 	.rev_id_offset = 0, /* No offset in I2C mode. */
1687 };
1688 
max310x_i2c_slave_addr(unsigned short addr,unsigned int nr)1689 static unsigned short max310x_i2c_slave_addr(unsigned short addr,
1690 					     unsigned int nr)
1691 {
1692 	/*
1693 	 * For MAX14830 and MAX3109, the slave address depends on what the
1694 	 * A0 and A1 pins are tied to.
1695 	 * See Table I2C Address Map of the datasheet.
1696 	 * Based on that table, the following formulas were determined:
1697 	 *   UART1 - UART0 = 0x10
1698 	 *   UART2 - UART1 = 0x20 + 0x10
1699 	 *   UART3 - UART2 = 0x10
1700 	 */
1701 
1702 	addr -= nr * 0x10;
1703 
1704 	if (nr >= 2)
1705 		addr -= 0x20;
1706 
1707 	return addr;
1708 }
1709 
max310x_i2c_probe(struct i2c_client * client)1710 static int max310x_i2c_probe(struct i2c_client *client)
1711 {
1712 	const struct max310x_devtype *devtype;
1713 	struct i2c_client *port_client;
1714 	struct regmap *regmaps[MAX310X_MAX_PORTS];
1715 	unsigned int i;
1716 	u8 port_addr;
1717 
1718 	devtype = i2c_get_match_data(client);
1719 	if (!devtype)
1720 		return dev_err_probe(&client->dev, -ENODEV, "Failed to match device\n");
1721 
1722 	if (client->addr < devtype->slave_addr.min ||
1723 	    client->addr > devtype->slave_addr.max)
1724 		return dev_err_probe(&client->dev, -EINVAL,
1725 				     "Slave addr 0x%x outside of range [0x%x, 0x%x]\n",
1726 				     client->addr, devtype->slave_addr.min,
1727 				     devtype->slave_addr.max);
1728 
1729 	regcfg_i2c.name = max310x_regmap_name(0);
1730 	regmaps[0] = devm_regmap_init_i2c(client, &regcfg_i2c);
1731 
1732 	for (i = 1; i < devtype->nr; i++) {
1733 		port_addr = max310x_i2c_slave_addr(client->addr, i);
1734 		port_client = devm_i2c_new_dummy_device(&client->dev,
1735 							client->adapter,
1736 							port_addr);
1737 		if (IS_ERR(port_client))
1738 			return PTR_ERR(port_client);
1739 
1740 		regcfg_i2c.name = max310x_regmap_name(i);
1741 		regmaps[i] = devm_regmap_init_i2c(port_client, &regcfg_i2c);
1742 	}
1743 
1744 	return max310x_probe(&client->dev, devtype, &max310x_i2c_if_cfg,
1745 			     regmaps, client->irq);
1746 }
1747 
max310x_i2c_remove(struct i2c_client * client)1748 static void max310x_i2c_remove(struct i2c_client *client)
1749 {
1750 	max310x_remove(&client->dev);
1751 }
1752 
1753 static const struct i2c_device_id max310x_i2c_id_table[] = {
1754 	{ .name = "max3107", .driver_data = (kernel_ulong_t)&max3107_devtype },
1755 	{ .name = "max3108", .driver_data = (kernel_ulong_t)&max3108_devtype },
1756 	{ .name = "max3109", .driver_data = (kernel_ulong_t)&max3109_devtype },
1757 	{ .name = "max14830", .driver_data = (kernel_ulong_t)&max14830_devtype },
1758 	{ }
1759 };
1760 MODULE_DEVICE_TABLE(i2c, max310x_i2c_id_table);
1761 
1762 static struct i2c_driver max310x_i2c_driver = {
1763 	.driver = {
1764 		.name		= MAX310X_NAME,
1765 		.of_match_table	= max310x_dt_ids,
1766 		.pm		= &max310x_pm_ops,
1767 	},
1768 	.probe		= max310x_i2c_probe,
1769 	.remove		= max310x_i2c_remove,
1770 	.id_table	= max310x_i2c_id_table,
1771 };
1772 #endif
1773 
max310x_uart_init(void)1774 static int __init max310x_uart_init(void)
1775 {
1776 	int ret;
1777 
1778 	bitmap_zero(max310x_lines, MAX310X_UART_NRMAX);
1779 
1780 	ret = uart_register_driver(&max310x_uart);
1781 	if (ret)
1782 		return ret;
1783 
1784 #if IS_ENABLED(CONFIG_SPI_MASTER)
1785 	ret = spi_register_driver(&max310x_spi_driver);
1786 	if (ret)
1787 		goto err_spi_register;
1788 #endif
1789 
1790 #if IS_ENABLED(CONFIG_I2C)
1791 	ret = i2c_add_driver(&max310x_i2c_driver);
1792 	if (ret)
1793 		goto err_i2c_register;
1794 #endif
1795 
1796 	return 0;
1797 
1798 #if IS_ENABLED(CONFIG_I2C)
1799 err_i2c_register:
1800 #endif
1801 #if IS_ENABLED(CONFIG_SPI_MASTER)
1802 	spi_unregister_driver(&max310x_spi_driver);
1803 err_spi_register:
1804 #endif
1805 	uart_unregister_driver(&max310x_uart);
1806 
1807 	return ret;
1808 }
1809 module_init(max310x_uart_init);
1810 
max310x_uart_exit(void)1811 static void __exit max310x_uart_exit(void)
1812 {
1813 #if IS_ENABLED(CONFIG_I2C)
1814 	i2c_del_driver(&max310x_i2c_driver);
1815 #endif
1816 
1817 #if IS_ENABLED(CONFIG_SPI_MASTER)
1818 	spi_unregister_driver(&max310x_spi_driver);
1819 #endif
1820 
1821 	uart_unregister_driver(&max310x_uart);
1822 }
1823 module_exit(max310x_uart_exit);
1824 
1825 MODULE_LICENSE("GPL");
1826 MODULE_AUTHOR("Alexander Shiyan <shc_work@mail.ru>");
1827 MODULE_DESCRIPTION("MAX310X serial driver");
1828