xref: /openbmc/linux/drivers/w1/masters/ds2482.c (revision e5c86679)
1 /**
2  * ds2482.c - provides i2c to w1-master bridge(s)
3  * Copyright (C) 2005  Ben Gardner <bgardner@wabtec.com>
4  *
5  * The DS2482 is a sensor chip made by Dallas Semiconductor (Maxim).
6  * It is a I2C to 1-wire bridge.
7  * There are two variations: -100 and -800, which have 1 or 8 1-wire ports.
8  * The complete datasheet can be obtained from MAXIM's website at:
9  *   http://www.maxim-ic.com/quick_view2.cfm/qv_pk/4382
10  *
11  * This program is free software; you can redistribute it and/or modify
12  * it under the terms of the GNU General Public License as published by
13  * the Free Software Foundation; version 2 of the License.
14  */
15 
16 #include <linux/module.h>
17 #include <linux/init.h>
18 #include <linux/slab.h>
19 #include <linux/i2c.h>
20 #include <linux/delay.h>
21 #include <asm/delay.h>
22 
23 #include "../w1.h"
24 #include "../w1_int.h"
25 
26 /**
27  * Allow the active pullup to be disabled, default is enabled.
28  *
29  * Note from the DS2482 datasheet:
30  * The APU bit controls whether an active pullup (controlled slew-rate
31  * transistor) or a passive pullup (Rwpu resistor) will be used to drive
32  * a 1-Wire line from low to high. When APU = 0, active pullup is disabled
33  * (resistor mode). Active Pullup should always be selected unless there is
34  * only a single slave on the 1-Wire line.
35  */
36 static int ds2482_active_pullup = 1;
37 module_param_named(active_pullup, ds2482_active_pullup, int, 0644);
38 
39 /**
40  * The DS2482 registers - there are 3 registers that are addressed by a read
41  * pointer. The read pointer is set by the last command executed.
42  *
43  * To read the data, issue a register read for any address
44  */
45 #define DS2482_CMD_RESET		0xF0	/* No param */
46 #define DS2482_CMD_SET_READ_PTR		0xE1	/* Param: DS2482_PTR_CODE_xxx */
47 #define DS2482_CMD_CHANNEL_SELECT	0xC3	/* Param: Channel byte - DS2482-800 only */
48 #define DS2482_CMD_WRITE_CONFIG		0xD2	/* Param: Config byte */
49 #define DS2482_CMD_1WIRE_RESET		0xB4	/* Param: None */
50 #define DS2482_CMD_1WIRE_SINGLE_BIT	0x87	/* Param: Bit byte (bit7) */
51 #define DS2482_CMD_1WIRE_WRITE_BYTE	0xA5	/* Param: Data byte */
52 #define DS2482_CMD_1WIRE_READ_BYTE	0x96	/* Param: None */
53 /* Note to read the byte, Set the ReadPtr to Data then read (any addr) */
54 #define DS2482_CMD_1WIRE_TRIPLET	0x78	/* Param: Dir byte (bit7) */
55 
56 /* Values for DS2482_CMD_SET_READ_PTR */
57 #define DS2482_PTR_CODE_STATUS		0xF0
58 #define DS2482_PTR_CODE_DATA		0xE1
59 #define DS2482_PTR_CODE_CHANNEL		0xD2	/* DS2482-800 only */
60 #define DS2482_PTR_CODE_CONFIG		0xC3
61 
62 /**
63  * Configure Register bit definitions
64  * The top 4 bits always read 0.
65  * To write, the top nibble must be the 1's compl. of the low nibble.
66  */
67 #define DS2482_REG_CFG_1WS		0x08	/* 1-wire speed */
68 #define DS2482_REG_CFG_SPU		0x04	/* strong pull-up */
69 #define DS2482_REG_CFG_PPM		0x02	/* presence pulse masking */
70 #define DS2482_REG_CFG_APU		0x01	/* active pull-up */
71 
72 
73 /**
74  * Write and verify codes for the CHANNEL_SELECT command (DS2482-800 only).
75  * To set the channel, write the value at the index of the channel.
76  * Read and compare against the corresponding value to verify the change.
77  */
78 static const u8 ds2482_chan_wr[8] =
79 	{ 0xF0, 0xE1, 0xD2, 0xC3, 0xB4, 0xA5, 0x96, 0x87 };
80 static const u8 ds2482_chan_rd[8] =
81 	{ 0xB8, 0xB1, 0xAA, 0xA3, 0x9C, 0x95, 0x8E, 0x87 };
82 
83 
84 /**
85  * Status Register bit definitions (read only)
86  */
87 #define DS2482_REG_STS_DIR		0x80
88 #define DS2482_REG_STS_TSB		0x40
89 #define DS2482_REG_STS_SBR		0x20
90 #define DS2482_REG_STS_RST		0x10
91 #define DS2482_REG_STS_LL		0x08
92 #define DS2482_REG_STS_SD		0x04
93 #define DS2482_REG_STS_PPD		0x02
94 #define DS2482_REG_STS_1WB		0x01
95 
96 
97 static int ds2482_probe(struct i2c_client *client,
98 			const struct i2c_device_id *id);
99 static int ds2482_remove(struct i2c_client *client);
100 
101 
102 /**
103  * Driver data (common to all clients)
104  */
105 static const struct i2c_device_id ds2482_id[] = {
106 	{ "ds2482", 0 },
107 	{ }
108 };
109 MODULE_DEVICE_TABLE(i2c, ds2482_id);
110 
111 static struct i2c_driver ds2482_driver = {
112 	.driver = {
113 		.name	= "ds2482",
114 	},
115 	.probe		= ds2482_probe,
116 	.remove		= ds2482_remove,
117 	.id_table	= ds2482_id,
118 };
119 
120 /*
121  * Client data (each client gets its own)
122  */
123 
124 struct ds2482_data;
125 
126 struct ds2482_w1_chan {
127 	struct ds2482_data	*pdev;
128 	u8			channel;
129 	struct w1_bus_master	w1_bm;
130 };
131 
132 struct ds2482_data {
133 	struct i2c_client	*client;
134 	struct mutex		access_lock;
135 
136 	/* 1-wire interface(s) */
137 	int			w1_count;	/* 1 or 8 */
138 	struct ds2482_w1_chan	w1_ch[8];
139 
140 	/* per-device values */
141 	u8			channel;
142 	u8			read_prt;	/* see DS2482_PTR_CODE_xxx */
143 	u8			reg_config;
144 };
145 
146 
147 /**
148  * Helper to calculate values for configuration register
149  * @param conf the raw config value
150  * @return the value w/ complements that can be written to register
151  */
152 static inline u8 ds2482_calculate_config(u8 conf)
153 {
154 	if (ds2482_active_pullup)
155 		conf |= DS2482_REG_CFG_APU;
156 
157 	return conf | ((~conf & 0x0f) << 4);
158 }
159 
160 
161 /**
162  * Sets the read pointer.
163  * @param pdev		The ds2482 client pointer
164  * @param read_ptr	see DS2482_PTR_CODE_xxx above
165  * @return -1 on failure, 0 on success
166  */
167 static inline int ds2482_select_register(struct ds2482_data *pdev, u8 read_ptr)
168 {
169 	if (pdev->read_prt != read_ptr) {
170 		if (i2c_smbus_write_byte_data(pdev->client,
171 					      DS2482_CMD_SET_READ_PTR,
172 					      read_ptr) < 0)
173 			return -1;
174 
175 		pdev->read_prt = read_ptr;
176 	}
177 	return 0;
178 }
179 
180 /**
181  * Sends a command without a parameter
182  * @param pdev	The ds2482 client pointer
183  * @param cmd	DS2482_CMD_RESET,
184  *		DS2482_CMD_1WIRE_RESET,
185  *		DS2482_CMD_1WIRE_READ_BYTE
186  * @return -1 on failure, 0 on success
187  */
188 static inline int ds2482_send_cmd(struct ds2482_data *pdev, u8 cmd)
189 {
190 	if (i2c_smbus_write_byte(pdev->client, cmd) < 0)
191 		return -1;
192 
193 	pdev->read_prt = DS2482_PTR_CODE_STATUS;
194 	return 0;
195 }
196 
197 /**
198  * Sends a command with a parameter
199  * @param pdev	The ds2482 client pointer
200  * @param cmd	DS2482_CMD_WRITE_CONFIG,
201  *		DS2482_CMD_1WIRE_SINGLE_BIT,
202  *		DS2482_CMD_1WIRE_WRITE_BYTE,
203  *		DS2482_CMD_1WIRE_TRIPLET
204  * @param byte	The data to send
205  * @return -1 on failure, 0 on success
206  */
207 static inline int ds2482_send_cmd_data(struct ds2482_data *pdev,
208 				       u8 cmd, u8 byte)
209 {
210 	if (i2c_smbus_write_byte_data(pdev->client, cmd, byte) < 0)
211 		return -1;
212 
213 	/* all cmds leave in STATUS, except CONFIG */
214 	pdev->read_prt = (cmd != DS2482_CMD_WRITE_CONFIG) ?
215 			 DS2482_PTR_CODE_STATUS : DS2482_PTR_CODE_CONFIG;
216 	return 0;
217 }
218 
219 
220 /*
221  * 1-Wire interface code
222  */
223 
224 #define DS2482_WAIT_IDLE_TIMEOUT	100
225 
226 /**
227  * Waits until the 1-wire interface is idle (not busy)
228  *
229  * @param pdev Pointer to the device structure
230  * @return the last value read from status or -1 (failure)
231  */
232 static int ds2482_wait_1wire_idle(struct ds2482_data *pdev)
233 {
234 	int temp = -1;
235 	int retries = 0;
236 
237 	if (!ds2482_select_register(pdev, DS2482_PTR_CODE_STATUS)) {
238 		do {
239 			temp = i2c_smbus_read_byte(pdev->client);
240 		} while ((temp >= 0) && (temp & DS2482_REG_STS_1WB) &&
241 			 (++retries < DS2482_WAIT_IDLE_TIMEOUT));
242 	}
243 
244 	if (retries >= DS2482_WAIT_IDLE_TIMEOUT)
245 		pr_err("%s: timeout on channel %d\n",
246 		       __func__, pdev->channel);
247 
248 	return temp;
249 }
250 
251 /**
252  * Selects a w1 channel.
253  * The 1-wire interface must be idle before calling this function.
254  *
255  * @param pdev		The ds2482 client pointer
256  * @param channel	0-7
257  * @return		-1 (failure) or 0 (success)
258  */
259 static int ds2482_set_channel(struct ds2482_data *pdev, u8 channel)
260 {
261 	if (i2c_smbus_write_byte_data(pdev->client, DS2482_CMD_CHANNEL_SELECT,
262 				      ds2482_chan_wr[channel]) < 0)
263 		return -1;
264 
265 	pdev->read_prt = DS2482_PTR_CODE_CHANNEL;
266 	pdev->channel = -1;
267 	if (i2c_smbus_read_byte(pdev->client) == ds2482_chan_rd[channel]) {
268 		pdev->channel = channel;
269 		return 0;
270 	}
271 	return -1;
272 }
273 
274 
275 /**
276  * Performs the touch-bit function, which writes a 0 or 1 and reads the level.
277  *
278  * @param data	The ds2482 channel pointer
279  * @param bit	The level to write: 0 or non-zero
280  * @return	The level read: 0 or 1
281  */
282 static u8 ds2482_w1_touch_bit(void *data, u8 bit)
283 {
284 	struct ds2482_w1_chan *pchan = data;
285 	struct ds2482_data    *pdev = pchan->pdev;
286 	int status = -1;
287 
288 	mutex_lock(&pdev->access_lock);
289 
290 	/* Select the channel */
291 	ds2482_wait_1wire_idle(pdev);
292 	if (pdev->w1_count > 1)
293 		ds2482_set_channel(pdev, pchan->channel);
294 
295 	/* Send the touch command, wait until 1WB == 0, return the status */
296 	if (!ds2482_send_cmd_data(pdev, DS2482_CMD_1WIRE_SINGLE_BIT,
297 				  bit ? 0xFF : 0))
298 		status = ds2482_wait_1wire_idle(pdev);
299 
300 	mutex_unlock(&pdev->access_lock);
301 
302 	return (status & DS2482_REG_STS_SBR) ? 1 : 0;
303 }
304 
305 /**
306  * Performs the triplet function, which reads two bits and writes a bit.
307  * The bit written is determined by the two reads:
308  *   00 => dbit, 01 => 0, 10 => 1
309  *
310  * @param data	The ds2482 channel pointer
311  * @param dbit	The direction to choose if both branches are valid
312  * @return	b0=read1 b1=read2 b3=bit written
313  */
314 static u8 ds2482_w1_triplet(void *data, u8 dbit)
315 {
316 	struct ds2482_w1_chan *pchan = data;
317 	struct ds2482_data    *pdev = pchan->pdev;
318 	int status = (3 << 5);
319 
320 	mutex_lock(&pdev->access_lock);
321 
322 	/* Select the channel */
323 	ds2482_wait_1wire_idle(pdev);
324 	if (pdev->w1_count > 1)
325 		ds2482_set_channel(pdev, pchan->channel);
326 
327 	/* Send the triplet command, wait until 1WB == 0, return the status */
328 	if (!ds2482_send_cmd_data(pdev, DS2482_CMD_1WIRE_TRIPLET,
329 				  dbit ? 0xFF : 0))
330 		status = ds2482_wait_1wire_idle(pdev);
331 
332 	mutex_unlock(&pdev->access_lock);
333 
334 	/* Decode the status */
335 	return (status >> 5);
336 }
337 
338 /**
339  * Performs the write byte function.
340  *
341  * @param data	The ds2482 channel pointer
342  * @param byte	The value to write
343  */
344 static void ds2482_w1_write_byte(void *data, u8 byte)
345 {
346 	struct ds2482_w1_chan *pchan = data;
347 	struct ds2482_data    *pdev = pchan->pdev;
348 
349 	mutex_lock(&pdev->access_lock);
350 
351 	/* Select the channel */
352 	ds2482_wait_1wire_idle(pdev);
353 	if (pdev->w1_count > 1)
354 		ds2482_set_channel(pdev, pchan->channel);
355 
356 	/* Send the write byte command */
357 	ds2482_send_cmd_data(pdev, DS2482_CMD_1WIRE_WRITE_BYTE, byte);
358 
359 	mutex_unlock(&pdev->access_lock);
360 }
361 
362 /**
363  * Performs the read byte function.
364  *
365  * @param data	The ds2482 channel pointer
366  * @return	The value read
367  */
368 static u8 ds2482_w1_read_byte(void *data)
369 {
370 	struct ds2482_w1_chan *pchan = data;
371 	struct ds2482_data    *pdev = pchan->pdev;
372 	int result;
373 
374 	mutex_lock(&pdev->access_lock);
375 
376 	/* Select the channel */
377 	ds2482_wait_1wire_idle(pdev);
378 	if (pdev->w1_count > 1)
379 		ds2482_set_channel(pdev, pchan->channel);
380 
381 	/* Send the read byte command */
382 	ds2482_send_cmd(pdev, DS2482_CMD_1WIRE_READ_BYTE);
383 
384 	/* Wait until 1WB == 0 */
385 	ds2482_wait_1wire_idle(pdev);
386 
387 	/* Select the data register */
388 	ds2482_select_register(pdev, DS2482_PTR_CODE_DATA);
389 
390 	/* Read the data byte */
391 	result = i2c_smbus_read_byte(pdev->client);
392 
393 	mutex_unlock(&pdev->access_lock);
394 
395 	return result;
396 }
397 
398 
399 /**
400  * Sends a reset on the 1-wire interface
401  *
402  * @param data	The ds2482 channel pointer
403  * @return	0=Device present, 1=No device present or error
404  */
405 static u8 ds2482_w1_reset_bus(void *data)
406 {
407 	struct ds2482_w1_chan *pchan = data;
408 	struct ds2482_data    *pdev = pchan->pdev;
409 	int err;
410 	u8 retval = 1;
411 
412 	mutex_lock(&pdev->access_lock);
413 
414 	/* Select the channel */
415 	ds2482_wait_1wire_idle(pdev);
416 	if (pdev->w1_count > 1)
417 		ds2482_set_channel(pdev, pchan->channel);
418 
419 	/* Send the reset command */
420 	err = ds2482_send_cmd(pdev, DS2482_CMD_1WIRE_RESET);
421 	if (err >= 0) {
422 		/* Wait until the reset is complete */
423 		err = ds2482_wait_1wire_idle(pdev);
424 		retval = !(err & DS2482_REG_STS_PPD);
425 
426 		/* If the chip did reset since detect, re-config it */
427 		if (err & DS2482_REG_STS_RST)
428 			ds2482_send_cmd_data(pdev, DS2482_CMD_WRITE_CONFIG,
429 					     ds2482_calculate_config(0x00));
430 	}
431 
432 	mutex_unlock(&pdev->access_lock);
433 
434 	return retval;
435 }
436 
437 static u8 ds2482_w1_set_pullup(void *data, int delay)
438 {
439 	struct ds2482_w1_chan *pchan = data;
440 	struct ds2482_data    *pdev = pchan->pdev;
441 	u8 retval = 1;
442 
443 	/* if delay is non-zero activate the pullup,
444 	 * the strong pullup will be automatically deactivated
445 	 * by the master, so do not explicitly deactive it
446 	 */
447 	if (delay) {
448 		/* both waits are crucial, otherwise devices might not be
449 		 * powered long enough, causing e.g. a w1_therm sensor to
450 		 * provide wrong conversion results
451 		 */
452 		ds2482_wait_1wire_idle(pdev);
453 		/* note: it seems like both SPU and APU have to be set! */
454 		retval = ds2482_send_cmd_data(pdev, DS2482_CMD_WRITE_CONFIG,
455 			ds2482_calculate_config(DS2482_REG_CFG_SPU |
456 						DS2482_REG_CFG_APU));
457 		ds2482_wait_1wire_idle(pdev);
458 	}
459 
460 	return retval;
461 }
462 
463 
464 static int ds2482_probe(struct i2c_client *client,
465 			const struct i2c_device_id *id)
466 {
467 	struct ds2482_data *data;
468 	int err = -ENODEV;
469 	int temp1;
470 	int idx;
471 
472 	if (!i2c_check_functionality(client->adapter,
473 				     I2C_FUNC_SMBUS_WRITE_BYTE_DATA |
474 				     I2C_FUNC_SMBUS_BYTE))
475 		return -ENODEV;
476 
477 	if (!(data = kzalloc(sizeof(struct ds2482_data), GFP_KERNEL))) {
478 		err = -ENOMEM;
479 		goto exit;
480 	}
481 
482 	data->client = client;
483 	i2c_set_clientdata(client, data);
484 
485 	/* Reset the device (sets the read_ptr to status) */
486 	if (ds2482_send_cmd(data, DS2482_CMD_RESET) < 0) {
487 		dev_warn(&client->dev, "DS2482 reset failed.\n");
488 		goto exit_free;
489 	}
490 
491 	/* Sleep at least 525ns to allow the reset to complete */
492 	ndelay(525);
493 
494 	/* Read the status byte - only reset bit and line should be set */
495 	temp1 = i2c_smbus_read_byte(client);
496 	if (temp1 != (DS2482_REG_STS_LL | DS2482_REG_STS_RST)) {
497 		dev_warn(&client->dev, "DS2482 reset status "
498 			 "0x%02X - not a DS2482\n", temp1);
499 		goto exit_free;
500 	}
501 
502 	/* Detect the 8-port version */
503 	data->w1_count = 1;
504 	if (ds2482_set_channel(data, 7) == 0)
505 		data->w1_count = 8;
506 
507 	/* Set all config items to 0 (off) */
508 	ds2482_send_cmd_data(data, DS2482_CMD_WRITE_CONFIG,
509 		ds2482_calculate_config(0x00));
510 
511 	mutex_init(&data->access_lock);
512 
513 	/* Register 1-wire interface(s) */
514 	for (idx = 0; idx < data->w1_count; idx++) {
515 		data->w1_ch[idx].pdev = data;
516 		data->w1_ch[idx].channel = idx;
517 
518 		/* Populate all the w1 bus master stuff */
519 		data->w1_ch[idx].w1_bm.data       = &data->w1_ch[idx];
520 		data->w1_ch[idx].w1_bm.read_byte  = ds2482_w1_read_byte;
521 		data->w1_ch[idx].w1_bm.write_byte = ds2482_w1_write_byte;
522 		data->w1_ch[idx].w1_bm.touch_bit  = ds2482_w1_touch_bit;
523 		data->w1_ch[idx].w1_bm.triplet    = ds2482_w1_triplet;
524 		data->w1_ch[idx].w1_bm.reset_bus  = ds2482_w1_reset_bus;
525 		data->w1_ch[idx].w1_bm.set_pullup = ds2482_w1_set_pullup;
526 
527 		err = w1_add_master_device(&data->w1_ch[idx].w1_bm);
528 		if (err) {
529 			data->w1_ch[idx].pdev = NULL;
530 			goto exit_w1_remove;
531 		}
532 	}
533 
534 	return 0;
535 
536 exit_w1_remove:
537 	for (idx = 0; idx < data->w1_count; idx++) {
538 		if (data->w1_ch[idx].pdev != NULL)
539 			w1_remove_master_device(&data->w1_ch[idx].w1_bm);
540 	}
541 exit_free:
542 	kfree(data);
543 exit:
544 	return err;
545 }
546 
547 static int ds2482_remove(struct i2c_client *client)
548 {
549 	struct ds2482_data   *data = i2c_get_clientdata(client);
550 	int idx;
551 
552 	/* Unregister the 1-wire bridge(s) */
553 	for (idx = 0; idx < data->w1_count; idx++) {
554 		if (data->w1_ch[idx].pdev != NULL)
555 			w1_remove_master_device(&data->w1_ch[idx].w1_bm);
556 	}
557 
558 	/* Free the memory */
559 	kfree(data);
560 	return 0;
561 }
562 
563 module_i2c_driver(ds2482_driver);
564 
565 MODULE_PARM_DESC(active_pullup, "Active pullup (apply to all buses): " \
566 				"0-disable, 1-enable (default)");
567 MODULE_AUTHOR("Ben Gardner <bgardner@wabtec.com>");
568 MODULE_DESCRIPTION("DS2482 driver");
569 MODULE_LICENSE("GPL");
570