blob: 5fd65c61112e93a10714dcb15311e27bf882b6e4 [file] [log] [blame]
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -07001/* Copyright (c) 2011, Code Aurora Forum. All rights reserved.
2 *
3 * This program is free software; you can redistribute it and/or modify
4 * it under the terms of the GNU General Public License version 2 and
5 * only version 2 as published by the Free Software Foundation.
6 *
7 * This program is distributed in the hope that it will be useful,
8 * but WITHOUT ANY WARRANTY; without even the implied warranty of
9 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
10 * GNU General Public License for more details.
11 *
12 */
13#define pr_fmt(fmt) "%s: " fmt, __func__
14
15#include <linux/module.h>
16#include <linux/moduleparam.h>
17#include <linux/platform_device.h>
18#include <linux/errno.h>
19#include <linux/mfd/pm8xxx/pm8921-bms.h>
20#include <linux/mfd/pm8xxx/core.h>
Abhijeet Dharmapurikarc448d982011-06-28 20:48:36 -070021#include <linux/mfd/pm8921-adc.h>
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -070022#include <linux/interrupt.h>
23#include <linux/bitops.h>
24#include <linux/debugfs.h>
25#include <linux/slab.h>
26
27#define BMS_CONTROL 0x224
28#define BMS_OUTPUT0 0x230
29#define BMS_OUTPUT1 0x231
30#define BMS_TEST1 0x237
31#define CCADC_ANA_PARAM 0x240
32#define CCADC_DIG_PARAM 0x241
33#define CCADC_RSV 0x242
34#define CCADC_DATA0 0x244
35#define CCADC_DATA1 0x245
36#define CCADC_OFFSET_TRIM1 0x34A
37#define CCADC_OFFSET_TRIM0 0x34B
38
39#define ADC_ARB_SECP_CNTRL 0x190
40#define ADC_ARB_SECP_AMUX_CNTRL 0x191
41#define ADC_ARB_SECP_ANA_PARAM 0x192
42#define ADC_ARB_SECP_RSV 0x194
43#define ADC_ARB_SECP_DATA1 0x195
44#define ADC_ARB_SECP_DATA0 0x196
45
46enum pmic_bms_interrupts {
47 PM8921_BMS_SBI_WRITE_OK,
48 PM8921_BMS_CC_THR,
49 PM8921_BMS_VSENSE_THR,
50 PM8921_BMS_VSENSE_FOR_R,
51 PM8921_BMS_OCV_FOR_R,
52 PM8921_BMS_GOOD_OCV,
53 PM8921_BMS_VSENSE_AVG,
54 PM_BMS_MAX_INTS,
55};
56
57/**
58 * struct pm8921_bms_chip -device information
59 * @dev: device pointer to access the parent
60 * @dent: debugfs directory
61 * @r_sense: batt sense resistance value
62 * @i_test: peak current
63 * @v_failure: battery dead voltage
64 * @fcc: battery capacity
65 *
66 */
67struct pm8921_bms_chip {
68 struct device *dev;
69 struct dentry *dent;
70 unsigned int r_sense;
71 unsigned int i_test;
72 unsigned int v_failure;
73 unsigned int fcc;
74 struct single_row_lut *fcc_temp_lut;
75 struct single_row_lut *fcc_sf_lut;
76 struct pc_temp_ocv_lut *pc_temp_ocv_lut;
77 struct pc_sf_lut *pc_sf_lut;
78 struct delayed_work calib_work;
79 unsigned int calib_delay_ms;
Abhijeet Dharmapurikarfa77f1a2011-06-27 21:11:51 -070080 unsigned int revision;
Abhijeet Dharmapurikarc448d982011-06-28 20:48:36 -070081 unsigned int batt_temp_channel;
82 unsigned int vbat_channel;
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -070083 unsigned int pmic_bms_irq[PM_BMS_MAX_INTS];
84 DECLARE_BITMAP(enabled_irqs, PM_BMS_MAX_INTS);
85};
86
87static struct pm8921_bms_chip *the_chip;
88
89#define DEFAULT_RBATT_MOHMS 128
90#define DEFAULT_UNUSABLE_CHARGE_MAH 10
91#define DEFAULT_OCV_MICROVOLTS 3900000
92#define DEFAULT_REMAINING_CHARGE_MAH 990
93#define DEFAULT_COULUMB_COUNTER 0
94#define DEFAULT_CHARGE_CYCLES 0
95
96static int last_rbatt = -EINVAL;
97static int last_fcc = -EINVAL;
98static int last_unusable_charge = -EINVAL;
99static int last_ocv_uv = -EINVAL;
100static int last_remaining_charge = -EINVAL;
101static int last_coulumb_counter = -EINVAL;
102static int last_soc = -EINVAL;
103
104static int last_chargecycles = DEFAULT_CHARGE_CYCLES;
105static int last_charge_increase;
106
107module_param(last_rbatt, int, 0644);
108module_param(last_fcc, int, 0644);
109module_param(last_unusable_charge, int, 0644);
110module_param(last_ocv_uv, int, 0644);
111module_param(last_remaining_charge, int, 0644);
112module_param(last_coulumb_counter, int, 0644);
113module_param(last_chargecycles, int, 0644);
114module_param(last_charge_increase, int, 0644);
115
116static int pm_bms_get_rt_status(struct pm8921_bms_chip *chip, int irq_id)
117{
118 return pm8xxx_read_irq_stat(chip->dev->parent,
119 chip->pmic_bms_irq[irq_id]);
120}
121
122static void pm8921_bms_disable_irq(struct pm8921_bms_chip *chip, int interrupt)
123{
124 if (__test_and_clear_bit(interrupt, chip->enabled_irqs)) {
Abhijeet Dharmapurikar15e853d2011-06-27 20:55:47 -0700125 pr_debug("%d\n", chip->pmic_bms_irq[interrupt]);
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700126 disable_irq_nosync(chip->pmic_bms_irq[interrupt]);
127 }
128}
129
130static int pm_bms_masked_write(struct pm8921_bms_chip *chip, u16 addr,
131 u8 mask, u8 val)
132{
133 int rc;
134 u8 reg;
135
136 rc = pm8xxx_readb(chip->dev->parent, addr, &reg);
137 if (rc) {
138 pr_err("read failed addr = %03X, rc = %d\n", addr, rc);
139 return rc;
140 }
141 reg &= ~mask;
142 reg |= val & mask;
143 rc = pm8xxx_writeb(chip->dev->parent, addr, reg);
144 if (rc) {
145 pr_err("write failed addr = %03X, rc = %d\n", addr, rc);
146 return rc;
147 }
148 return 0;
149}
150
151#define SELECT_OUTPUT_DATA 0x1C
152#define SELECT_OUTPUT_TYPE_SHIFT 2
153#define OCV_FOR_RBATT 0x0
154#define VSENSE_FOR_RBATT 0x1
155#define VBATT_FOR_RBATT 0x2
156#define CC_MSB 0x3
157#define CC_LSB 0x4
158#define LAST_GOOD_OCV_VALUE 0x5
159#define VSENSE_AVG 0x6
160#define VBATT_AVG 0x7
161
162static int pm_bms_read_output_data(struct pm8921_bms_chip *chip, int type,
163 int16_t *result)
164{
165 int rc;
166 u8 reg;
167
168 if (!result) {
169 pr_err("result pointer null\n");
170 return -EINVAL;
171 }
172 *result = 0;
173 if (type < OCV_FOR_RBATT || type > VBATT_AVG) {
174 pr_err("invalid type %d asked to read\n", type);
175 return -EINVAL;
176 }
177 rc = pm_bms_masked_write(chip, BMS_CONTROL, SELECT_OUTPUT_DATA,
178 type << SELECT_OUTPUT_TYPE_SHIFT);
179 if (rc) {
180 pr_err("fail to select %d type in BMS_CONTROL rc = %d\n",
181 type, rc);
182 return rc;
183 }
184
185 rc = pm8xxx_readb(chip->dev->parent, BMS_OUTPUT0, &reg);
186 if (rc) {
187 pr_err("fail to read BMS_OUTPUT0 for type %d rc = %d\n",
188 type, rc);
189 return rc;
190 }
191 *result = reg;
192 rc = pm8xxx_readb(chip->dev->parent, BMS_OUTPUT1, &reg);
193 if (rc) {
194 pr_err("fail to read BMS_OUTPUT1 for type %d rc = %d\n",
195 type, rc);
196 return rc;
197 }
198 *result |= reg << 8;
199 pr_debug("type %d result %x", type, *result);
200 return 0;
201}
202
203#define V_PER_BIT_MUL_FACTOR 977
204#define V_PER_BIT_DIV_FACTOR 10
205#define CONV_READING(a) (((a) * (int)V_PER_BIT_MUL_FACTOR)\
206 /V_PER_BIT_DIV_FACTOR)
207
208/* returns the signed value read from the hardware */
209static int read_cc(struct pm8921_bms_chip *chip, int *result)
210{
211 int rc;
212 uint16_t msw, lsw;
213
214 rc = pm_bms_read_output_data(chip, CC_LSB, &lsw);
215 if (rc) {
216 pr_err("fail to read CC_LSB rc = %d\n", rc);
217 return rc;
218 }
219 rc = pm_bms_read_output_data(chip, CC_MSB, &msw);
220 if (rc) {
221 pr_err("fail to read CC_MSB rc = %d\n", rc);
222 return rc;
223 }
224 *result = msw << 16 | lsw;
225 pr_debug("msw = %04x lsw = %04x cc = %d\n", msw, lsw, *result);
226 return 0;
227}
228
229static int read_last_good_ocv(struct pm8921_bms_chip *chip, uint *result)
230{
231 int rc;
232 uint16_t reading;
233
234 rc = pm_bms_read_output_data(chip, LAST_GOOD_OCV_VALUE, &reading);
235 if (rc) {
236 pr_err("fail to read LAST_GOOD_OCV_VALUE rc = %d\n", rc);
237 return rc;
238 }
239 *result = CONV_READING(reading);
240 pr_debug("raw = %04x ocv_microV = %u\n", reading, *result);
241 return 0;
242}
243
244static int read_vbatt_for_rbatt(struct pm8921_bms_chip *chip, uint *result)
245{
246 int rc;
247 uint16_t reading;
248
249 rc = pm_bms_read_output_data(chip, VBATT_FOR_RBATT, &reading);
250 if (rc) {
251 pr_err("fail to read VBATT_FOR_RBATT rc = %d\n", rc);
252 return rc;
253 }
254 *result = CONV_READING(reading);
255 pr_debug("raw = %04x vbatt_for_r_microV = %u\n", reading, *result);
256 return 0;
257}
258
259static int read_vsense_for_rbatt(struct pm8921_bms_chip *chip, uint *result)
260{
261 int rc;
262 uint16_t reading;
263
264 rc = pm_bms_read_output_data(chip, VSENSE_FOR_RBATT, &reading);
265 if (rc) {
266 pr_err("fail to read VSENSE_FOR_RBATT rc = %d\n", rc);
267 return rc;
268 }
269 *result = CONV_READING(reading);
270 pr_debug("raw = %04x vsense_for_r_microV = %u\n", reading, *result);
271 return 0;
272}
273
274static int read_ocv_for_rbatt(struct pm8921_bms_chip *chip, uint *result)
275{
276 int rc;
277 uint16_t reading;
278
279 rc = pm_bms_read_output_data(chip, OCV_FOR_RBATT, &reading);
280 if (rc) {
281 pr_err("fail to read OCV_FOR_RBATT rc = %d\n", rc);
282 return rc;
283 }
284 *result = CONV_READING(reading);
285 pr_debug("read = %04x ocv_for_r_microV = %u\n", reading, *result);
286 return 0;
287}
288
Abhijeet Dharmapurikar2fb6f082011-06-28 17:10:27 -0700289static int read_vsense_avg(struct pm8921_bms_chip *chip, int *result)
290{
291 int rc;
292 int16_t reading;
293
294 rc = pm_bms_read_output_data(chip, VSENSE_AVG, &reading);
295 if (rc) {
296 pr_err("fail to read VSENSE_AVG rc = %d\n", rc);
297 return rc;
298 }
299 *result = CONV_READING(reading);
300 pr_debug("read = %04x vsense = %d\n", reading, *result);
301 return 0;
302}
303
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700304static int linear_interpolate(int y0, int x0, int y1, int x1, int x)
305{
306 if (y0 == y1 || x == x0)
307 return y0;
308 if (x1 == x0 || x == x1)
309 return y1;
310
311 return y0 + ((y1 - y0) * (x - x0) / (x1 - x0));
312}
313
314static int interpolate_single_lut(struct single_row_lut *lut, int x)
315{
316 int i, result;
317
318 if (x < lut->x[0]) {
Abhijeet Dharmapurikar15e853d2011-06-27 20:55:47 -0700319 pr_debug("x %d less than known range return y = %d lut = %pS\n",
320 x, lut->y[0], lut);
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700321 return lut->y[0];
322 }
323 if (x > lut->x[lut->cols - 1]) {
Abhijeet Dharmapurikar15e853d2011-06-27 20:55:47 -0700324 pr_debug("x %d more than known range return y = %d lut = %pS\n",
325 x, lut->y[lut->cols - 1], lut);
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700326 return lut->y[lut->cols - 1];
327 }
328
329 for (i = 0; i < lut->cols; i++)
330 if (x <= lut->x[i])
331 break;
332 if (x == lut->x[i]) {
333 result = lut->y[i];
334 } else {
335 result = linear_interpolate(
336 lut->y[i - 1],
337 lut->x[i - 1],
338 lut->y[i],
339 lut->x[i],
340 x);
341 }
342 return result;
343}
344
345static int interpolate_fcc(struct pm8921_bms_chip *chip, int batt_temp)
346{
347 return interpolate_single_lut(chip->fcc_temp_lut, batt_temp);
348}
349
350static int interpolate_scalingfactor_fcc(struct pm8921_bms_chip *chip,
351 int cycles)
352{
353 return interpolate_single_lut(chip->fcc_sf_lut, cycles);
354}
355
356static int interpolate_scalingfactor_pc(struct pm8921_bms_chip *chip,
357 int cycles, int pc)
358{
359 int i, scalefactorrow1, scalefactorrow2, scalefactor, row1, row2;
360 int rows = chip->pc_sf_lut->rows;
361 int cols = chip->pc_sf_lut->cols;
362
363 if (pc > chip->pc_sf_lut->percent[0]) {
Abhijeet Dharmapurikar15e853d2011-06-27 20:55:47 -0700364 pr_debug("pc %d greater than known pc ranges for sfd\n", pc);
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700365 row1 = 0;
366 row2 = 0;
367 }
368 if (pc < chip->pc_sf_lut->percent[rows - 1]) {
Abhijeet Dharmapurikar15e853d2011-06-27 20:55:47 -0700369 pr_debug("pc %d less than known pc ranges for sf", pc);
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700370 row1 = rows - 1;
371 row2 = rows - 1;
372 }
373 for (i = 0; i < rows; i++) {
374 if (pc == chip->pc_sf_lut->percent[i]) {
375 row1 = i;
376 row2 = i;
377 break;
378 }
379 if (pc > chip->pc_sf_lut->percent[i]) {
380 row1 = i - 1;
381 row2 = i;
382 break;
383 }
384 }
385
386 if (cycles < chip->pc_sf_lut->cycles[0])
387 cycles = chip->pc_sf_lut->cycles[0];
388 if (cycles > chip->pc_sf_lut->cycles[cols - 1])
389 cycles = chip->pc_sf_lut->cycles[cols - 1];
390
391 for (i = 0; i < cols; i++)
392 if (cycles <= chip->pc_sf_lut->cycles[i])
393 break;
394 if (cycles == chip->pc_sf_lut->cycles[i]) {
395 scalefactor = linear_interpolate(
396 chip->pc_sf_lut->sf[row1][i],
397 chip->pc_sf_lut->percent[row1],
398 chip->pc_sf_lut->sf[row2][i],
399 chip->pc_sf_lut->percent[row2],
400 pc);
401 return scalefactor;
402 }
403
404 scalefactorrow1 = linear_interpolate(
405 chip->pc_sf_lut->sf[row1][i - 1],
406 chip->pc_sf_lut->cycles[i - 1],
407 chip->pc_sf_lut->sf[row1][i],
408 chip->pc_sf_lut->cycles[i],
409 cycles);
410
411 scalefactorrow2 = linear_interpolate(
412 chip->pc_sf_lut->sf[row2][i - 1],
413 chip->pc_sf_lut->cycles[i - 1],
414 chip->pc_sf_lut->sf[row2][i],
415 chip->pc_sf_lut->cycles[i],
416 cycles);
417
418 scalefactor = linear_interpolate(
419 scalefactorrow1,
420 chip->pc_sf_lut->percent[row1],
421 scalefactorrow2,
422 chip->pc_sf_lut->percent[row2],
423 pc);
424
425 return scalefactor;
426}
427
428static int interpolate_pc(struct pm8921_bms_chip *chip,
429 int batt_temp, int ocv)
430{
431 int i, j, ocvi, ocviplusone, pc = 0;
432 int rows = chip->pc_temp_ocv_lut->rows;
433 int cols = chip->pc_temp_ocv_lut->cols;
434
435 if (batt_temp < chip->pc_temp_ocv_lut->temp[0]) {
Abhijeet Dharmapurikar15e853d2011-06-27 20:55:47 -0700436 pr_debug("batt_temp %d < known temp range for pc\n", batt_temp);
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700437 batt_temp = chip->pc_temp_ocv_lut->temp[0];
438 }
439 if (batt_temp > chip->pc_temp_ocv_lut->temp[cols - 1]) {
Abhijeet Dharmapurikar15e853d2011-06-27 20:55:47 -0700440 pr_debug("batt_temp %d > known temp range for pc\n", batt_temp);
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700441 batt_temp = chip->pc_temp_ocv_lut->temp[cols - 1];
442 }
443
444 for (j = 0; j < cols; j++)
445 if (batt_temp <= chip->pc_temp_ocv_lut->temp[j])
446 break;
447 if (batt_temp == chip->pc_temp_ocv_lut->temp[j]) {
448 /* found an exact match for temp in the table */
449 if (ocv >= chip->pc_temp_ocv_lut->ocv[0][j])
450 return chip->pc_temp_ocv_lut->percent[0];
451 if (ocv <= chip->pc_temp_ocv_lut->ocv[rows - 1][j])
452 return chip->pc_temp_ocv_lut->percent[rows - 1];
453 for (i = 0; i < rows; i++) {
454 if (ocv >= chip->pc_temp_ocv_lut->ocv[i][j]) {
455 if (ocv == chip->pc_temp_ocv_lut->ocv[i][j])
456 return
457 chip->pc_temp_ocv_lut->percent[i];
458 pc = linear_interpolate(
459 chip->pc_temp_ocv_lut->percent[i],
460 chip->pc_temp_ocv_lut->ocv[i][j],
461 chip->pc_temp_ocv_lut->percent[i - 1],
462 chip->pc_temp_ocv_lut->ocv[i - 1][j],
463 ocv);
464 return pc;
465 }
466 }
467 }
468
469 if (ocv >= chip->pc_temp_ocv_lut->ocv[0][j])
470 return chip->pc_temp_ocv_lut->percent[0];
471 if (ocv <= chip->pc_temp_ocv_lut->ocv[rows - 1][j - 1])
472 return chip->pc_temp_ocv_lut->percent[rows - 1];
473 for (i = 0; i < rows; i++) {
474 if (ocv >= chip->pc_temp_ocv_lut->ocv[i][j - 1]
475 && ocv <= chip->pc_temp_ocv_lut->ocv[i][j]) {
476 pc = chip->pc_temp_ocv_lut->percent[i];
477
478 if (i < rows - 1
479 && ocv >=
480 chip->pc_temp_ocv_lut->ocv[i + 1][j - 1]
481 && ocv <=
482 chip->pc_temp_ocv_lut->ocv[i + 1][j]) {
483 ocvi = linear_interpolate(
484 chip->pc_temp_ocv_lut->ocv[i][j - 1],
485 chip->pc_temp_ocv_lut->temp[j - 1],
486 chip->pc_temp_ocv_lut->ocv[i][j],
487 chip->pc_temp_ocv_lut->temp[j],
488 batt_temp);
489
490 ocviplusone = linear_interpolate(
491 chip->pc_temp_ocv_lut
492 ->ocv[i + 1][j - 1],
493 chip->pc_temp_ocv_lut->temp[j - 1],
494 chip->pc_temp_ocv_lut->ocv[i + 1][j],
495 chip->pc_temp_ocv_lut->temp[j],
496 batt_temp);
497
498 pc = linear_interpolate(
499 chip->pc_temp_ocv_lut->percent[i],
500 ocvi,
501 chip->pc_temp_ocv_lut->percent[i + 1],
502 ocviplusone,
503 ocv);
504 }
505 return pc;
506 }
507 }
508
Abhijeet Dharmapurikar15e853d2011-06-27 20:55:47 -0700509 pr_debug("%d ocv wasn't found for temp %d in the LUT returning pc = %d",
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700510 ocv, batt_temp, pc);
511 return pc;
512}
513
514static int calculate_rbatt(struct pm8921_bms_chip *chip)
515{
516 int rc;
517 unsigned int ocv, vsense, vbatt, r_batt;
518
519 rc = read_ocv_for_rbatt(chip, &ocv);
520 if (rc) {
521 pr_err("fail to read ocv_for_rbatt rc = %d\n", rc);
522 ocv = 0;
523 }
524 rc = read_vbatt_for_rbatt(chip, &vbatt);
525 if (rc) {
526 pr_err("fail to read vbatt_for_rbatt rc = %d\n", rc);
527 ocv = 0;
528 }
529 rc = read_vsense_for_rbatt(chip, &vsense);
530 if (rc) {
531 pr_err("fail to read vsense_for_rbatt rc = %d\n", rc);
532 ocv = 0;
533 }
534 if (ocv == 0
535 || ocv == vbatt
536 || vsense == 0) {
Abhijeet Dharmapurikar15e853d2011-06-27 20:55:47 -0700537 pr_debug("rbatt readings unavailable ocv = %d, vbatt = %d,"
538 "vsen = %d\n",
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700539 ocv, vbatt, vsense);
540 return -EINVAL;
541 }
542 r_batt = ((ocv - vbatt) * chip->r_sense) / vsense;
543 pr_debug("r_batt = %umilliOhms", r_batt);
544 return r_batt;
545}
546
547static int calculate_fcc(struct pm8921_bms_chip *chip, int batt_temp,
548 int chargecycles)
549{
550 int initfcc, result, scalefactor = 0;
551
552 initfcc = interpolate_fcc(chip, batt_temp);
553 pr_debug("intfcc = %umAh batt_temp = %d\n", initfcc, batt_temp);
554
555 scalefactor = interpolate_scalingfactor_fcc(chip, chargecycles);
556 pr_debug("scalefactor = %d batt_temp = %d\n", scalefactor, batt_temp);
557
558 /* Multiply the initial FCC value by the scale factor. */
559 result = (initfcc * scalefactor) / 100;
560 pr_debug("fcc mAh = %d\n", result);
561 return result;
562}
563
564static int calculate_pc(struct pm8921_bms_chip *chip, int ocv_uv, int batt_temp,
565 int chargecycles)
566{
567 int pc, scalefactor;
568
569 pc = interpolate_pc(chip, batt_temp, ocv_uv / 1000);
570 pr_debug("pc = %u for ocv = %dmicroVolts batt_temp = %d\n",
571 pc, ocv_uv, batt_temp);
572
573 scalefactor = interpolate_scalingfactor_pc(chip, chargecycles, pc);
574 pr_debug("scalefactor = %u batt_temp = %d\n", scalefactor, batt_temp);
575
576 /* Multiply the initial FCC value by the scale factor. */
577 pc = (pc * scalefactor) / 100;
578 return pc;
579}
580
Abhijeet Dharmapurikarfa77f1a2011-06-27 21:11:51 -0700581#define CC_RESOLUTION_N_V1 1085069
582#define CC_RESOLUTION_D_V1 100000
583#define CC_RESOLUTION_N_V2 868056
584#define CC_RESOLUTION_D_V2 10000
585static s64 cc_to_microvolt_v1(s64 cc)
586{
587 return div_s64(cc * CC_RESOLUTION_N_V1, CC_RESOLUTION_D_V1);
588}
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700589
Abhijeet Dharmapurikarfa77f1a2011-06-27 21:11:51 -0700590static s64 cc_to_microvolt_v2(s64 cc)
591{
592 return div_s64(cc * CC_RESOLUTION_N_V2, CC_RESOLUTION_D_V2);
593}
594
595static s64 cc_to_microvolt(struct pm8921_bms_chip *chip, s64 cc)
596{
597 /*
598 * resolution (the value of a single bit) was changed after revision 2.0
599 * for more accurate readings
600 */
601 return (chip->revision < PM8XXX_REVISION_8901_2p0) ?
602 cc_to_microvolt_v1((s64)cc) :
603 cc_to_microvolt_v2((s64)cc);
604}
605
606#define CC_READING_TICKS 55
607#define SLEEP_CLK_HZ 32768
608#define SECONDS_PER_HOUR 3600
609static s64 ccmicrovolt_to_uvh(s64 cc_uv)
610{
611 return div_s64(cc_uv * CC_READING_TICKS,
612 SLEEP_CLK_HZ * SECONDS_PER_HOUR);
613}
614
615static void calculate_cc_mah(struct pm8921_bms_chip *chip, int64_t *val,
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700616 int *coulumb_counter, int *update_userspace)
617{
618 int rc;
619 int64_t cc_voltage_uv, cc_uvh, cc_mah;
620
621 rc = read_cc(the_chip, coulumb_counter);
622 if (rc) {
623 *coulumb_counter = (last_coulumb_counter < 0) ?
624 DEFAULT_COULUMB_COUNTER : last_coulumb_counter;
Abhijeet Dharmapurikar15e853d2011-06-27 20:55:47 -0700625 pr_debug("couldn't read coulumb counter err = %d assuming %d\n",
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700626 rc, *coulumb_counter);
627 *update_userspace = 0;
628 }
629 cc_voltage_uv = (int64_t)*coulumb_counter;
Abhijeet Dharmapurikarfa77f1a2011-06-27 21:11:51 -0700630 cc_voltage_uv = cc_to_microvolt(chip, cc_voltage_uv);
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700631 pr_debug("cc_voltage_uv = %lld microvolts\n", cc_voltage_uv);
Abhijeet Dharmapurikarfa77f1a2011-06-27 21:11:51 -0700632 cc_uvh = ccmicrovolt_to_uvh(cc_voltage_uv);
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700633 pr_debug("cc_uvh = %lld micro_volt_hour\n", cc_uvh);
634 cc_mah = div_s64(cc_uvh, chip->r_sense);
635 *val = cc_mah;
636}
637
Abhijeet Dharmapurikarc448d982011-06-28 20:48:36 -0700638static int get_battery_uvolts(struct pm8921_bms_chip *chip, int *uvolts)
639{
640 int rc;
641 struct pm8921_adc_chan_result result;
642
643 rc = pm8921_adc_read(chip->vbat_channel, &result);
644 if (rc) {
645 pr_err("error reading adc channel = %d, rc = %d\n",
646 chip->vbat_channel, rc);
647 return rc;
648 }
649 pr_debug("mvolts phy = %lld meas = 0x%llx", result.physical,
650 result.measurement);
651 *uvolts = (int)result.physical;
652 *uvolts = *uvolts * 1000;
653 return 0;
654}
655
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700656static int calculate_state_of_charge(struct pm8921_bms_chip *chip,
657 int batt_temp, int chargecycles)
658{
659 int remaining_usable_charge, fcc, unusable_charge;
660 int remaining_charge, soc, rc, ocv, pc, coulumb_counter;
661 int rbatt, voltage_unusable_uv, pc_unusable;
662 int update_userspace = 1;
663 int64_t cc_mah;
664
665 rbatt = calculate_rbatt(chip);
666 if (rbatt < 0) {
667 rbatt = (last_rbatt < 0) ? DEFAULT_RBATT_MOHMS : last_rbatt;
Abhijeet Dharmapurikar15e853d2011-06-27 20:55:47 -0700668 pr_debug("rbatt unavailable assuming %d\n",
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700669 rbatt);
670 update_userspace = 0;
671 }
672 pr_debug("rbatt = %umilliOhms", rbatt);
673
674 fcc = calculate_fcc(chip, batt_temp, chargecycles);
675 if (fcc < -EINVAL) {
676 fcc = (last_fcc < 0) ? chip->fcc : last_fcc;
Abhijeet Dharmapurikar15e853d2011-06-27 20:55:47 -0700677 pr_debug("failed to read fcc assuming %d\n", fcc);
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700678 update_userspace = 0;
679 }
Abhijeet Dharmapurikar15e853d2011-06-27 20:55:47 -0700680 pr_debug("FCC = %umAh", fcc);
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700681
682 /* calculate unusable charge */
683 voltage_unusable_uv = (rbatt * chip->i_test)
684 + (chip->v_failure * 1000);
685 pc_unusable = calculate_pc(chip, voltage_unusable_uv,
686 batt_temp, chargecycles);
687 if (pc_unusable < 0) {
688 unusable_charge = (last_unusable_charge < 0) ?
689 DEFAULT_UNUSABLE_CHARGE_MAH : last_unusable_charge;
Abhijeet Dharmapurikar15e853d2011-06-27 20:55:47 -0700690 pr_debug("unusable_charge failed assuming %d\n",
691 unusable_charge);
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700692 } else {
693 unusable_charge = (fcc * pc_unusable) / 100;
694 }
Abhijeet Dharmapurikar15e853d2011-06-27 20:55:47 -0700695 pr_debug("UUC = %umAh at temp = %d, fcc = %umAh"
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700696 "unusable_voltage = %umicroVolts pc_unusable = %d\n",
697 unusable_charge, batt_temp, fcc,
698 voltage_unusable_uv, pc_unusable);
699
700 /* calculate remainging charge */
701 rc = read_last_good_ocv(chip, &ocv);
702 if (rc || ocv == 0) {
Abhijeet Dharmapurikarc448d982011-06-28 20:48:36 -0700703 rc = get_battery_uvolts(chip, &ocv);
Abhijeet Dharmapurikar15e853d2011-06-27 20:55:47 -0700704 pr_debug("ocv not available adc vbat = %d rc = %d\n", ocv, rc);
Abhijeet Dharmapurikarc448d982011-06-28 20:48:36 -0700705 if (rc) {
706 ocv = (last_ocv_uv < 0) ?
707 DEFAULT_OCV_MICROVOLTS : last_ocv_uv;
Abhijeet Dharmapurikar15e853d2011-06-27 20:55:47 -0700708 pr_debug("adc ocv failed assuming %d rc = %d\n",
709 ocv, rc);
Abhijeet Dharmapurikarc448d982011-06-28 20:48:36 -0700710 }
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700711 update_userspace = 0;
712 }
713 pc = calculate_pc(chip, ocv, batt_temp, chargecycles);
714 if (pc < 0) {
715 remaining_charge = (last_remaining_charge < 0) ?
716 DEFAULT_REMAINING_CHARGE_MAH : last_remaining_charge;
Abhijeet Dharmapurikar15e853d2011-06-27 20:55:47 -0700717 pr_debug("calculate remaining charge failed assuming %d\n",
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700718 remaining_charge);
719 update_userspace = 0;
720 } else {
721 remaining_charge = (fcc * pc) / 100;
722 }
Abhijeet Dharmapurikar15e853d2011-06-27 20:55:47 -0700723 pr_debug("RC = %umAh ocv = %d pc = %d\n",
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700724 remaining_charge, ocv, pc);
725
726 /* calculate cc milli_volt_hour */
Abhijeet Dharmapurikarfa77f1a2011-06-27 21:11:51 -0700727 calculate_cc_mah(chip, &cc_mah, &coulumb_counter, &update_userspace);
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700728 pr_debug("cc_mah = %lldmAh cc = %d\n", cc_mah, coulumb_counter);
729
730 /* calculate remaining usable charge */
731 remaining_usable_charge = remaining_charge - cc_mah - unusable_charge;
Abhijeet Dharmapurikar15e853d2011-06-27 20:55:47 -0700732 pr_debug("RUC = %dmAh\n", remaining_usable_charge);
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700733 if (remaining_usable_charge < 0) {
734 pr_err("bad rem_usb_chg cc_mah %lld, rem_chg %d unusb_chg %d\n",
735 cc_mah, remaining_charge, unusable_charge);
736 update_userspace = 0;
737 }
738
739 soc = (remaining_usable_charge * 100) / (fcc - unusable_charge);
740 if (soc > 100 || soc < 0) {
741 pr_err("bad soc rem_usb_chg %d fcc %d unusb_chg %d\n",
742 remaining_usable_charge, fcc, unusable_charge);
743 update_userspace = 0;
744 }
Abhijeet Dharmapurikar15e853d2011-06-27 20:55:47 -0700745 pr_debug("SOC = %u%%\n", soc);
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700746
747 if (update_userspace) {
748 last_rbatt = rbatt;
749 last_fcc = fcc;
750 last_unusable_charge = unusable_charge;
751 last_ocv_uv = ocv;
752 last_remaining_charge = remaining_charge;
753 last_coulumb_counter = coulumb_counter;
754 last_soc = soc;
755 }
756 return soc;
757}
758
Abhijeet Dharmapurikar2fb6f082011-06-28 17:10:27 -0700759int pm8921_bms_get_vsense_avg(int *result)
760{
761 if (the_chip)
762 return read_vsense_avg(the_chip, result);
763
764 pr_err("called before initialization\n");
765 return -EINVAL;
766}
767EXPORT_SYMBOL(pm8921_bms_get_vsense_avg);
768
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700769int pm8921_bms_get_percent_charge(void)
770{
Abhijeet Dharmapurikarc448d982011-06-28 20:48:36 -0700771 int batt_temp, rc;
772 struct pm8921_adc_chan_result result;
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700773
Abhijeet Dharmapurikarc448d982011-06-28 20:48:36 -0700774 if (!the_chip) {
775 pr_err("called before initialization\n");
776 return -EINVAL;
777 }
778
779 rc = pm8921_adc_read(the_chip->batt_temp_channel, &result);
780 if (rc) {
781 pr_err("error reading adc channel = %d, rc = %d\n",
782 the_chip->batt_temp_channel, rc);
783 return rc;
784 }
785 pr_debug("batt_temp phy = %lld meas = 0x%llx", result.physical,
786 result.measurement);
787 batt_temp = (int)result.physical;
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700788 return calculate_state_of_charge(the_chip,
789 batt_temp, last_chargecycles);
790}
791EXPORT_SYMBOL_GPL(pm8921_bms_get_percent_charge);
792
793static int start_percent;
794static int end_percent;
795void pm8921_bms_charging_began(void)
796{
Abhijeet Dharmapurikarc448d982011-06-28 20:48:36 -0700797 start_percent = pm8921_bms_get_percent_charge();
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700798 pr_debug("start_percent = %u%%\n", start_percent);
799}
800EXPORT_SYMBOL_GPL(pm8921_bms_charging_began);
801
802void pm8921_bms_charging_end(void)
803{
Abhijeet Dharmapurikarc448d982011-06-28 20:48:36 -0700804 end_percent = pm8921_bms_get_percent_charge();
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700805 if (end_percent > start_percent) {
806 last_charge_increase = end_percent - start_percent;
807 if (last_charge_increase > 100) {
808 last_chargecycles++;
809 last_charge_increase = last_charge_increase % 100;
810 }
811 }
812 pr_debug("end_percent = %u%% last_charge_increase = %d"
813 "last_chargecycles = %d\n",
814 end_percent,
815 last_charge_increase,
816 last_chargecycles);
817}
818EXPORT_SYMBOL_GPL(pm8921_bms_charging_end);
819
820static irqreturn_t pm8921_bms_sbi_write_ok_handler(int irq, void *data)
821{
Abhijeet Dharmapurikar15e853d2011-06-27 20:55:47 -0700822 pr_debug("irq = %d triggered", irq);
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700823 return IRQ_HANDLED;
824}
825
826static irqreturn_t pm8921_bms_cc_thr_handler(int irq, void *data)
827{
Abhijeet Dharmapurikar15e853d2011-06-27 20:55:47 -0700828 pr_debug("irq = %d triggered", irq);
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700829 return IRQ_HANDLED;
830}
Abhijeet Dharmapurikar15e853d2011-06-27 20:55:47 -0700831
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700832static irqreturn_t pm8921_bms_vsense_thr_handler(int irq, void *data)
833{
Abhijeet Dharmapurikar15e853d2011-06-27 20:55:47 -0700834 pr_debug("irq = %d triggered", irq);
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700835 return IRQ_HANDLED;
836}
Abhijeet Dharmapurikar15e853d2011-06-27 20:55:47 -0700837
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700838static irqreturn_t pm8921_bms_vsense_for_r_handler(int irq, void *data)
839{
Abhijeet Dharmapurikar15e853d2011-06-27 20:55:47 -0700840 pr_debug("irq = %d triggered", irq);
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700841 return IRQ_HANDLED;
842}
Abhijeet Dharmapurikar15e853d2011-06-27 20:55:47 -0700843
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700844static irqreturn_t pm8921_bms_ocv_for_r_handler(int irq, void *data)
845{
Abhijeet Dharmapurikar15e853d2011-06-27 20:55:47 -0700846
847 pr_debug("irq = %d triggered", irq);
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700848 return IRQ_HANDLED;
849}
Abhijeet Dharmapurikar15e853d2011-06-27 20:55:47 -0700850
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700851static irqreturn_t pm8921_bms_good_ocv_handler(int irq, void *data)
852{
Abhijeet Dharmapurikar15e853d2011-06-27 20:55:47 -0700853
854 pr_debug("irq = %d triggered", irq);
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700855 return IRQ_HANDLED;
856}
Abhijeet Dharmapurikar15e853d2011-06-27 20:55:47 -0700857
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700858static irqreturn_t pm8921_bms_vsense_avg_handler(int irq, void *data)
859{
Abhijeet Dharmapurikar15e853d2011-06-27 20:55:47 -0700860 pr_debug("irq = %d triggered", irq);
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700861 return IRQ_HANDLED;
862}
863
864struct pm_bms_irq_init_data {
865 unsigned int irq_id;
866 char *name;
867 unsigned long flags;
868 irqreturn_t (*handler)(int, void *);
869};
870
871#define BMS_IRQ(_id, _flags, _handler) \
872{ \
873 .irq_id = _id, \
874 .name = #_id, \
875 .flags = _flags, \
876 .handler = _handler, \
877}
878
879struct pm_bms_irq_init_data bms_irq_data[] = {
880 BMS_IRQ(PM8921_BMS_SBI_WRITE_OK, IRQF_TRIGGER_RISING,
881 pm8921_bms_sbi_write_ok_handler),
882 BMS_IRQ(PM8921_BMS_CC_THR, IRQF_TRIGGER_RISING,
883 pm8921_bms_cc_thr_handler),
884 BMS_IRQ(PM8921_BMS_VSENSE_THR, IRQF_TRIGGER_RISING,
885 pm8921_bms_vsense_thr_handler),
886 BMS_IRQ(PM8921_BMS_VSENSE_FOR_R, IRQF_TRIGGER_RISING,
887 pm8921_bms_vsense_for_r_handler),
888 BMS_IRQ(PM8921_BMS_OCV_FOR_R, IRQF_TRIGGER_RISING,
889 pm8921_bms_ocv_for_r_handler),
890 BMS_IRQ(PM8921_BMS_GOOD_OCV, IRQF_TRIGGER_RISING,
891 pm8921_bms_good_ocv_handler),
892 BMS_IRQ(PM8921_BMS_VSENSE_AVG, IRQF_TRIGGER_RISING,
893 pm8921_bms_vsense_avg_handler),
894};
895
896static void free_irqs(struct pm8921_bms_chip *chip)
897{
898 int i;
899
900 for (i = 0; i < PM_BMS_MAX_INTS; i++)
901 if (chip->pmic_bms_irq[i]) {
902 free_irq(chip->pmic_bms_irq[i], NULL);
903 chip->pmic_bms_irq[i] = 0;
904 }
905}
906
907static int __devinit request_irqs(struct pm8921_bms_chip *chip,
908 struct platform_device *pdev)
909{
910 struct resource *res;
911 int ret, i;
912
913 ret = 0;
914 bitmap_fill(chip->enabled_irqs, PM_BMS_MAX_INTS);
915
916 for (i = 0; i < ARRAY_SIZE(bms_irq_data); i++) {
917 res = platform_get_resource_byname(pdev, IORESOURCE_IRQ,
918 bms_irq_data[i].name);
919 if (res == NULL) {
920 pr_err("couldn't find %s\n", bms_irq_data[i].name);
921 goto err_out;
922 }
923 ret = request_irq(res->start, bms_irq_data[i].handler,
924 bms_irq_data[i].flags,
925 bms_irq_data[i].name, chip);
926 if (ret < 0) {
927 pr_err("couldn't request %d (%s) %d\n", res->start,
928 bms_irq_data[i].name, ret);
929 goto err_out;
930 }
931 chip->pmic_bms_irq[bms_irq_data[i].irq_id] = res->start;
932 pm8921_bms_disable_irq(chip, bms_irq_data[i].irq_id);
933 }
934 return 0;
935
936err_out:
937 free_irqs(chip);
938 return -EINVAL;
939}
940
941#define EN_BMS_BIT BIT(7)
942#define EN_PON_HS_BIT BIT(0)
943static int __devinit pm8921_bms_hw_init(struct pm8921_bms_chip *chip)
944{
945 int rc;
946
947 rc = pm_bms_masked_write(chip, BMS_CONTROL,
948 EN_BMS_BIT | EN_PON_HS_BIT, EN_BMS_BIT | EN_PON_HS_BIT);
949 if (rc) {
950 pr_err("failed to enable pon and bms addr = %d %d",
951 BMS_CONTROL, rc);
952 }
953
954 return 0;
955}
956
957enum {
958 CALC_RBATT,
959 CALC_FCC,
960 CALC_PC,
961 CALC_SOC,
962};
963
964static int test_batt_temp = 5;
965static int test_chargecycle = 150;
966static int test_ocv = 3900000;
967enum {
968 TEST_BATT_TEMP,
969 TEST_CHARGE_CYCLE,
970 TEST_OCV,
971};
972static int get_test_param(void *data, u64 * val)
973{
974 switch ((int)data) {
975 case TEST_BATT_TEMP:
976 *val = test_batt_temp;
977 break;
978 case TEST_CHARGE_CYCLE:
979 *val = test_chargecycle;
980 break;
981 case TEST_OCV:
982 *val = test_ocv;
983 break;
984 default:
985 return -EINVAL;
986 }
987 return 0;
988}
989static int set_test_param(void *data, u64 val)
990{
991 switch ((int)data) {
992 case TEST_BATT_TEMP:
993 test_batt_temp = (int)val;
994 break;
995 case TEST_CHARGE_CYCLE:
996 test_chargecycle = (int)val;
997 break;
998 case TEST_OCV:
999 test_ocv = (int)val;
1000 break;
1001 default:
1002 return -EINVAL;
1003 }
1004 return 0;
1005}
1006DEFINE_SIMPLE_ATTRIBUTE(temp_fops, get_test_param, set_test_param, "%llu\n");
1007
1008static int get_calc(void *data, u64 * val)
1009{
1010 int param = (int)data;
1011 int ret = 0;
1012
1013 *val = 0;
1014
1015 /* global irq number passed in via data */
1016 switch (param) {
1017 case CALC_RBATT:
1018 *val = calculate_rbatt(the_chip);
1019 break;
1020 case CALC_FCC:
1021 *val = calculate_fcc(the_chip, test_batt_temp,
1022 test_chargecycle);
1023 break;
1024 case CALC_PC:
1025 *val = calculate_pc(the_chip, test_ocv, test_batt_temp,
1026 test_chargecycle);
1027 break;
1028 case CALC_SOC:
1029 *val = calculate_state_of_charge(the_chip,
1030 test_batt_temp, test_chargecycle);
1031 break;
1032 default:
1033 ret = -EINVAL;
1034 }
1035 return ret;
1036}
1037DEFINE_SIMPLE_ATTRIBUTE(calc_fops, get_calc, NULL, "%llu\n");
1038
1039static int get_reading(void *data, u64 * val)
1040{
1041 int param = (int)data;
1042 int ret = 0;
1043
1044 *val = 0;
1045
1046 /* global irq number passed in via data */
1047 switch (param) {
1048 case CC_MSB:
1049 case CC_LSB:
1050 read_cc(the_chip, (int *)val);
1051 break;
1052 case LAST_GOOD_OCV_VALUE:
1053 read_last_good_ocv(the_chip, (uint *)val);
1054 break;
1055 case VBATT_FOR_RBATT:
1056 read_vbatt_for_rbatt(the_chip, (uint *)val);
1057 break;
1058 case VSENSE_FOR_RBATT:
1059 read_vsense_for_rbatt(the_chip, (uint *)val);
1060 break;
1061 case OCV_FOR_RBATT:
1062 read_ocv_for_rbatt(the_chip, (uint *)val);
1063 break;
Abhijeet Dharmapurikar2fb6f082011-06-28 17:10:27 -07001064 case VSENSE_AVG:
1065 read_vsense_avg(the_chip, (uint *)val);
1066 break;
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -07001067 default:
1068 ret = -EINVAL;
1069 }
1070 return ret;
1071}
1072DEFINE_SIMPLE_ATTRIBUTE(reading_fops, get_reading, NULL, "%llu\n");
1073
1074static int get_rt_status(void *data, u64 * val)
1075{
1076 int i = (int)data;
1077 int ret;
1078
1079 /* global irq number passed in via data */
1080 ret = pm_bms_get_rt_status(the_chip, i);
1081 *val = ret;
1082 return 0;
1083}
1084DEFINE_SIMPLE_ATTRIBUTE(rt_fops, get_rt_status, NULL, "%llu\n");
1085
1086static int get_reg(void *data, u64 * val)
1087{
1088 int addr = (int)data;
1089 int ret;
1090 u8 temp;
1091
1092 ret = pm8xxx_readb(the_chip->dev->parent, addr, &temp);
1093 if (ret) {
1094 pr_err("pm8xxx_readb to %x value = %d errored = %d\n",
1095 addr, temp, ret);
1096 return -EAGAIN;
1097 }
1098 *val = temp;
1099 return 0;
1100}
1101
1102static int set_reg(void *data, u64 val)
1103{
1104 int addr = (int)data;
1105 int ret;
1106 u8 temp;
1107
1108 temp = (u8) val;
1109 ret = pm8xxx_writeb(the_chip->dev->parent, addr, temp);
1110 if (ret) {
1111 pr_err("pm8xxx_writeb to %x value = %d errored = %d\n",
1112 addr, temp, ret);
1113 return -EAGAIN;
1114 }
1115 return 0;
1116}
1117DEFINE_SIMPLE_ATTRIBUTE(reg_fops, get_reg, set_reg, "0x%02llx\n");
1118
1119static void create_debugfs_entries(struct pm8921_bms_chip *chip)
1120{
1121 int i;
1122
1123 chip->dent = debugfs_create_dir("pm8921_bms", NULL);
1124
1125 if (IS_ERR(chip->dent)) {
1126 pr_err("pmic bms couldnt create debugfs dir\n");
1127 return;
1128 }
1129
1130 debugfs_create_file("BMS_CONTROL", 0644, chip->dent,
1131 (void *)BMS_CONTROL, &reg_fops);
1132 debugfs_create_file("BMS_OUTPUT0", 0644, chip->dent,
1133 (void *)BMS_OUTPUT0, &reg_fops);
1134 debugfs_create_file("BMS_OUTPUT1", 0644, chip->dent,
1135 (void *)BMS_OUTPUT1, &reg_fops);
1136 debugfs_create_file("BMS_TEST1", 0644, chip->dent,
1137 (void *)BMS_TEST1, &reg_fops);
1138 debugfs_create_file("CCADC_ANA_PARAM", 0644, chip->dent,
1139 (void *)CCADC_ANA_PARAM, &reg_fops);
1140 debugfs_create_file("CCADC_DIG_PARAM", 0644, chip->dent,
1141 (void *)CCADC_DIG_PARAM, &reg_fops);
1142 debugfs_create_file("CCADC_RSV", 0644, chip->dent,
1143 (void *)CCADC_RSV, &reg_fops);
1144 debugfs_create_file("CCADC_DATA0", 0644, chip->dent,
1145 (void *)CCADC_DATA0, &reg_fops);
1146 debugfs_create_file("CCADC_DATA1", 0644, chip->dent,
1147 (void *)CCADC_DATA1, &reg_fops);
1148 debugfs_create_file("CCADC_OFFSET_TRIM1", 0644, chip->dent,
1149 (void *)CCADC_OFFSET_TRIM1, &reg_fops);
1150 debugfs_create_file("CCADC_OFFSET_TRIM0", 0644, chip->dent,
1151 (void *)CCADC_OFFSET_TRIM0, &reg_fops);
1152
1153 debugfs_create_file("test_batt_temp", 0644, chip->dent,
1154 (void *)TEST_BATT_TEMP, &temp_fops);
1155 debugfs_create_file("test_chargecycle", 0644, chip->dent,
1156 (void *)TEST_CHARGE_CYCLE, &temp_fops);
1157 debugfs_create_file("test_ocv", 0644, chip->dent,
1158 (void *)TEST_OCV, &temp_fops);
1159
1160 debugfs_create_file("read_cc", 0644, chip->dent,
1161 (void *)CC_MSB, &reading_fops);
1162 debugfs_create_file("read_last_good_ocv", 0644, chip->dent,
1163 (void *)LAST_GOOD_OCV_VALUE, &reading_fops);
1164 debugfs_create_file("read_vbatt_for_rbatt", 0644, chip->dent,
1165 (void *)VBATT_FOR_RBATT, &reading_fops);
1166 debugfs_create_file("read_vsense_for_rbatt", 0644, chip->dent,
1167 (void *)VSENSE_FOR_RBATT, &reading_fops);
1168 debugfs_create_file("read_ocv_for_rbatt", 0644, chip->dent,
1169 (void *)OCV_FOR_RBATT, &reading_fops);
Abhijeet Dharmapurikar2fb6f082011-06-28 17:10:27 -07001170 debugfs_create_file("read_vsense_avg", 0644, chip->dent,
1171 (void *)VSENSE_AVG, &reading_fops);
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -07001172
1173 debugfs_create_file("show_rbatt", 0644, chip->dent,
1174 (void *)CALC_RBATT, &calc_fops);
1175 debugfs_create_file("show_fcc", 0644, chip->dent,
1176 (void *)CALC_FCC, &calc_fops);
1177 debugfs_create_file("show_pc", 0644, chip->dent,
1178 (void *)CALC_PC, &calc_fops);
1179 debugfs_create_file("show_soc", 0644, chip->dent,
1180 (void *)CALC_SOC, &calc_fops);
1181
1182 for (i = 0; i < ARRAY_SIZE(bms_irq_data); i++) {
1183 if (chip->pmic_bms_irq[bms_irq_data[i].irq_id])
1184 debugfs_create_file(bms_irq_data[i].name, 0444,
1185 chip->dent,
1186 (void *)bms_irq_data[i].irq_id,
1187 &rt_fops);
1188 }
1189}
1190
1191static void calibrate_work(struct work_struct *work)
1192{
1193 /* TODO */
1194}
1195
1196static int __devinit pm8921_bms_probe(struct platform_device *pdev)
1197{
1198 int rc = 0;
1199 struct pm8921_bms_chip *chip;
1200 const struct pm8921_bms_platform_data *pdata
1201 = pdev->dev.platform_data;
1202 if (!pdata) {
1203 pr_err("missing platform data\n");
1204 return -EINVAL;
1205 }
1206
Abhijeet Dharmapurikar15e853d2011-06-27 20:55:47 -07001207 chip = kzalloc(sizeof(struct pm8921_bms_chip), GFP_KERNEL);
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -07001208 if (!chip) {
1209 pr_err("Cannot allocate pm_bms_chip\n");
1210 return -ENOMEM;
1211 }
1212
1213 chip->dev = &pdev->dev;
1214 chip->r_sense = pdata->r_sense;
1215 chip->i_test = pdata->i_test;
1216 chip->v_failure = pdata->v_failure;
1217 chip->calib_delay_ms = pdata->calib_delay_ms;
1218 chip->fcc = pdata->batt_data->fcc;
1219
1220 chip->fcc_temp_lut = pdata->batt_data->fcc_temp_lut;
1221 chip->fcc_sf_lut = pdata->batt_data->fcc_sf_lut;
1222 chip->pc_temp_ocv_lut = pdata->batt_data->pc_temp_ocv_lut;
1223 chip->pc_sf_lut = pdata->batt_data->pc_sf_lut;
1224
Abhijeet Dharmapurikarc448d982011-06-28 20:48:36 -07001225 chip->batt_temp_channel = pdata->bms_cdata.batt_temp_channel;
1226 chip->vbat_channel = pdata->bms_cdata.vbat_channel;
Abhijeet Dharmapurikarfa77f1a2011-06-27 21:11:51 -07001227 chip->revision = pm8xxx_get_revision(chip->dev->parent);
Abhijeet Dharmapurikarc448d982011-06-28 20:48:36 -07001228
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -07001229 rc = pm8921_bms_hw_init(chip);
1230 if (rc) {
1231 pr_err("couldn't init hardware rc = %d\n", rc);
1232 goto free_chip;
1233 }
1234
1235 rc = request_irqs(chip, pdev);
1236 if (rc) {
1237 pr_err("couldn't register interrupts rc = %d\n", rc);
1238 goto free_chip;
1239 }
1240
1241 platform_set_drvdata(pdev, chip);
1242 the_chip = chip;
1243 create_debugfs_entries(chip);
1244
1245 INIT_DELAYED_WORK(&chip->calib_work, calibrate_work);
1246 schedule_delayed_work(&chip->calib_work,
1247 round_jiffies_relative(msecs_to_jiffies
1248 (chip->calib_delay_ms)));
1249 return 0;
1250
1251free_chip:
1252 kfree(chip);
1253 return rc;
1254}
1255
1256static int __devexit pm8921_bms_remove(struct platform_device *pdev)
1257{
1258 struct pm8921_bms_chip *chip = platform_get_drvdata(pdev);
1259
1260 free_irqs(chip);
1261 platform_set_drvdata(pdev, NULL);
1262 the_chip = NULL;
1263 kfree(chip);
1264 return 0;
1265}
1266
1267static struct platform_driver pm8921_bms_driver = {
1268 .probe = pm8921_bms_probe,
1269 .remove = __devexit_p(pm8921_bms_remove),
1270 .driver = {
1271 .name = PM8921_BMS_DEV_NAME,
1272 .owner = THIS_MODULE,
1273 },
1274};
1275
1276static int __init pm8921_bms_init(void)
1277{
1278 return platform_driver_register(&pm8921_bms_driver);
1279}
1280
1281static void __exit pm8921_bms_exit(void)
1282{
1283 platform_driver_unregister(&pm8921_bms_driver);
1284}
1285
1286late_initcall(pm8921_bms_init);
1287module_exit(pm8921_bms_exit);
1288
1289MODULE_LICENSE("GPL v2");
1290MODULE_DESCRIPTION("PMIC8921 bms driver");
1291MODULE_VERSION("1.0");
1292MODULE_ALIAS("platform:" PM8921_BMS_DEV_NAME);