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Michel JAOUEN01ec8c52012-04-26 10:00:04 +02001/*
Michel JAOUEN01ec8c52012-04-26 10:00:04 +02002 * Copyright 2012 ST Ericsson.
3 *
Lee Jones2fa5b0f42013-01-23 14:33:47 +00004 * Power supply driver for ST Ericsson pm2xxx_charger charger
5 *
Michel JAOUEN01ec8c52012-04-26 10:00:04 +02006 * This program is free software; you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License version 2 as
8 * published by the Free Software Foundation.
9 */
10
11#include <linux/init.h>
12#include <linux/module.h>
13#include <linux/device.h>
14#include <linux/interrupt.h>
15#include <linux/delay.h>
16#include <linux/slab.h>
17#include <linux/platform_device.h>
18#include <linux/power_supply.h>
19#include <linux/completion.h>
20#include <linux/regulator/consumer.h>
21#include <linux/err.h>
22#include <linux/i2c.h>
23#include <linux/workqueue.h>
24#include <linux/kobject.h>
25#include <linux/mfd/abx500.h>
26#include <linux/mfd/abx500/ab8500.h>
27#include <linux/mfd/abx500/ab8500-bm.h>
28#include <linux/mfd/abx500/ab8500-gpadc.h>
29#include <linux/mfd/abx500/ux500_chargalg.h>
30#include <linux/pm2301_charger.h>
31
Lee Jones2fa5b0f42013-01-23 14:33:47 +000032#include "pm2301_charger.h"
Michel JAOUEN01ec8c52012-04-26 10:00:04 +020033
34#define to_pm2xxx_charger_ac_device_info(x) container_of((x), \
35 struct pm2xxx_charger, ac_chg)
36
37static int pm2xxx_interrupt_registers[] = {
38 PM2XXX_REG_INT1,
39 PM2XXX_REG_INT2,
40 PM2XXX_REG_INT3,
41 PM2XXX_REG_INT4,
42 PM2XXX_REG_INT5,
43 PM2XXX_REG_INT6,
44};
45
Michel JAOUEN01ec8c52012-04-26 10:00:04 +020046static enum power_supply_property pm2xxx_charger_ac_props[] = {
47 POWER_SUPPLY_PROP_HEALTH,
48 POWER_SUPPLY_PROP_PRESENT,
49 POWER_SUPPLY_PROP_ONLINE,
50 POWER_SUPPLY_PROP_VOLTAGE_NOW,
51 POWER_SUPPLY_PROP_VOLTAGE_AVG,
52 POWER_SUPPLY_PROP_CURRENT_NOW,
53};
54
55static int pm2xxx_charger_voltage_map[] = {
56 3500,
57 3525,
58 3550,
59 3575,
60 3600,
61 3625,
62 3650,
63 3675,
64 3700,
65 3725,
66 3750,
67 3775,
68 3800,
69 3825,
70 3850,
71 3875,
72 3900,
73 3925,
74 3950,
75 3975,
76 4000,
77 4025,
78 4050,
79 4075,
80 4100,
81 4125,
82 4150,
83 4175,
84 4200,
85 4225,
86 4250,
87 4275,
88 4300,
89};
90
91static int pm2xxx_charger_current_map[] = {
92 200,
93 200,
94 400,
95 600,
96 800,
97 1000,
98 1200,
99 1400,
100 1600,
101 1800,
102 2000,
103 2200,
104 2400,
105 2600,
106 2800,
107 3000,
108};
109
Michel JAOUEN01ec8c52012-04-26 10:00:04 +0200110static const struct i2c_device_id pm2xxx_ident[] = {
111 { "pm2301", 0 },
112 { }
113};
114
115static int pm2xxx_reg_read(struct pm2xxx_charger *pm2, int reg, u8 *val)
116{
117 int ret;
118
119 ret = i2c_smbus_read_i2c_block_data(pm2->config.pm2xxx_i2c, reg,
120 1, val);
121 if (ret < 0)
122 dev_err(pm2->dev, "Error reading register at 0x%x\n", reg);
123
124 return ret;
125}
126
127static int pm2xxx_reg_write(struct pm2xxx_charger *pm2, int reg, u8 val)
128{
129 int ret;
130
131 ret = i2c_smbus_write_i2c_block_data(pm2->config.pm2xxx_i2c, reg,
132 1, &val);
133 if (ret < 0)
134 dev_err(pm2->dev, "Error writing register at 0x%x\n", reg);
135
136 return ret;
137}
138
139static int pm2xxx_charging_enable_mngt(struct pm2xxx_charger *pm2)
140{
141 int ret;
142
143 /* Enable charging */
144 ret = pm2xxx_reg_write(pm2, PM2XXX_BATT_CTRL_REG2,
145 (PM2XXX_CH_AUTO_RESUME_EN | PM2XXX_CHARGER_ENA));
146
147 return ret;
148}
149
150static int pm2xxx_charging_disable_mngt(struct pm2xxx_charger *pm2)
151{
152 int ret;
153
154 /* Disable charging */
155 ret = pm2xxx_reg_write(pm2, PM2XXX_BATT_CTRL_REG2,
156 (PM2XXX_CH_AUTO_RESUME_DIS | PM2XXX_CHARGER_DIS));
157
158 return ret;
159}
160
161static int pm2xxx_charger_batt_therm_mngt(struct pm2xxx_charger *pm2, int val)
162{
163 queue_work(pm2->charger_wq, &pm2->check_main_thermal_prot_work);
164
165 return 0;
166}
167
168
169int pm2xxx_charger_die_therm_mngt(struct pm2xxx_charger *pm2, int val)
170{
171 queue_work(pm2->charger_wq, &pm2->check_main_thermal_prot_work);
172
173 return 0;
174}
175
176static int pm2xxx_charger_ovv_mngt(struct pm2xxx_charger *pm2, int val)
177{
178 int ret = 0;
179
180 pm2->failure_input_ovv++;
181 if (pm2->failure_input_ovv < 4) {
182 ret = pm2xxx_charging_enable_mngt(pm2);
183 goto out;
184 } else {
185 pm2->failure_input_ovv = 0;
186 dev_err(pm2->dev, "Overvoltage detected\n");
187 pm2->flags.ovv = true;
188 power_supply_changed(&pm2->ac_chg.psy);
189 }
190
191out:
192 return ret;
193}
194
195static int pm2xxx_charger_wd_exp_mngt(struct pm2xxx_charger *pm2, int val)
196{
197 dev_dbg(pm2->dev , "20 minutes watchdog occured\n");
198
199 pm2->ac.wd_expired = true;
200 power_supply_changed(&pm2->ac_chg.psy);
201
202 return 0;
203}
204
205static int pm2xxx_charger_vbat_lsig_mngt(struct pm2xxx_charger *pm2, int val)
206{
207 switch (val) {
208 case PM2XXX_INT1_ITVBATLOWR:
209 dev_dbg(pm2->dev, "VBAT grows above VBAT_LOW level\n");
210 break;
211
212 case PM2XXX_INT1_ITVBATLOWF:
213 dev_dbg(pm2->dev, "VBAT drops below VBAT_LOW level\n");
214 break;
215
216 default:
217 dev_err(pm2->dev, "Unknown VBAT level\n");
218 }
219
220 return 0;
221}
222
223static int pm2xxx_charger_bat_disc_mngt(struct pm2xxx_charger *pm2, int val)
224{
225 dev_dbg(pm2->dev, "battery disconnected\n");
226
Olivier Clergeaud006f82d2012-05-14 16:50:29 +0200227 return 0;
Michel JAOUEN01ec8c52012-04-26 10:00:04 +0200228}
229
230static int pm2xxx_charger_detection(struct pm2xxx_charger *pm2, u8 *val)
231{
232 int ret = 0;
233
234 ret = pm2xxx_reg_read(pm2, PM2XXX_SRCE_REG_INT2, val);
235
236 if (ret < 0) {
237 dev_err(pm2->dev, "Charger detection failed\n");
238 goto out;
239 }
240
241 *val &= (PM2XXX_INT2_S_ITVPWR1PLUG | PM2XXX_INT2_S_ITVPWR2PLUG);
242out:
243 return ret;
244}
245
246static int pm2xxx_charger_itv_pwr_plug_mngt(struct pm2xxx_charger *pm2, int val)
247{
248
249 int ret;
250 u8 read_val;
251
252 /*
253 * Since we can't be sure that the events are received
254 * synchronously, we have the check if the main charger is
255 * connected by reading the interrupt source register.
256 */
257 ret = pm2xxx_charger_detection(pm2, &read_val);
258
259 if ((ret == 0) && read_val) {
260 pm2->ac.charger_connected = 1;
261 pm2->ac_conn = true;
262 queue_work(pm2->charger_wq, &pm2->ac_work);
263 }
264
265
266 return ret;
267}
268
269static int pm2xxx_charger_itv_pwr_unplug_mngt(struct pm2xxx_charger *pm2,
270 int val)
271{
272 pm2->ac.charger_connected = 0;
273 queue_work(pm2->charger_wq, &pm2->ac_work);
274
275 return 0;
276}
277
Olivier Clergeaud006f82d2012-05-14 16:50:29 +0200278static int pm2_int_reg0(void *pm2_data, int val)
Michel JAOUEN01ec8c52012-04-26 10:00:04 +0200279{
Olivier Clergeaud006f82d2012-05-14 16:50:29 +0200280 struct pm2xxx_charger *pm2 = pm2_data;
Michel JAOUEN01ec8c52012-04-26 10:00:04 +0200281 int ret = 0;
282
Olivier Clergeaud006f82d2012-05-14 16:50:29 +0200283 if (val & (PM2XXX_INT1_ITVBATLOWR | PM2XXX_INT1_ITVBATLOWF)) {
284 ret = pm2xxx_charger_vbat_lsig_mngt(pm2, val &
Michel JAOUEN01ec8c52012-04-26 10:00:04 +0200285 (PM2XXX_INT1_ITVBATLOWR | PM2XXX_INT1_ITVBATLOWF));
286 }
287
Olivier Clergeaud006f82d2012-05-14 16:50:29 +0200288 if (val & PM2XXX_INT1_ITVBATDISCONNECT) {
Michel JAOUEN01ec8c52012-04-26 10:00:04 +0200289 ret = pm2xxx_charger_bat_disc_mngt(pm2,
290 PM2XXX_INT1_ITVBATDISCONNECT);
291 }
292
293 return ret;
294}
295
Olivier Clergeaud006f82d2012-05-14 16:50:29 +0200296static int pm2_int_reg1(void *pm2_data, int val)
Michel JAOUEN01ec8c52012-04-26 10:00:04 +0200297{
Olivier Clergeaud006f82d2012-05-14 16:50:29 +0200298 struct pm2xxx_charger *pm2 = pm2_data;
Michel JAOUEN01ec8c52012-04-26 10:00:04 +0200299 int ret = 0;
300
Olivier Clergeaud006f82d2012-05-14 16:50:29 +0200301 if (val & (PM2XXX_INT2_ITVPWR1PLUG | PM2XXX_INT2_ITVPWR2PLUG)) {
Michel JAOUEN01ec8c52012-04-26 10:00:04 +0200302 dev_dbg(pm2->dev , "Main charger plugged\n");
Olivier Clergeaud006f82d2012-05-14 16:50:29 +0200303 ret = pm2xxx_charger_itv_pwr_plug_mngt(pm2, val &
Michel JAOUEN01ec8c52012-04-26 10:00:04 +0200304 (PM2XXX_INT2_ITVPWR1PLUG | PM2XXX_INT2_ITVPWR2PLUG));
305 }
306
Olivier Clergeaud006f82d2012-05-14 16:50:29 +0200307 if (val &
Michel JAOUEN01ec8c52012-04-26 10:00:04 +0200308 (PM2XXX_INT2_ITVPWR1UNPLUG | PM2XXX_INT2_ITVPWR2UNPLUG)) {
309 dev_dbg(pm2->dev , "Main charger unplugged\n");
Olivier Clergeaud006f82d2012-05-14 16:50:29 +0200310 ret = pm2xxx_charger_itv_pwr_unplug_mngt(pm2, val &
Michel JAOUEN01ec8c52012-04-26 10:00:04 +0200311 (PM2XXX_INT2_ITVPWR1UNPLUG |
312 PM2XXX_INT2_ITVPWR2UNPLUG));
313 }
314
315 return ret;
316}
317
Olivier Clergeaud006f82d2012-05-14 16:50:29 +0200318static int pm2_int_reg2(void *pm2_data, int val)
Michel JAOUEN01ec8c52012-04-26 10:00:04 +0200319{
Olivier Clergeaud006f82d2012-05-14 16:50:29 +0200320 struct pm2xxx_charger *pm2 = pm2_data;
Michel JAOUEN01ec8c52012-04-26 10:00:04 +0200321 int ret = 0;
322
Olivier Clergeaud006f82d2012-05-14 16:50:29 +0200323 if (val & PM2XXX_INT3_ITAUTOTIMEOUTWD)
324 ret = pm2xxx_charger_wd_exp_mngt(pm2, val);
Michel JAOUEN01ec8c52012-04-26 10:00:04 +0200325
Olivier Clergeaud006f82d2012-05-14 16:50:29 +0200326 if (val & (PM2XXX_INT3_ITCHPRECHARGEWD |
Michel JAOUEN01ec8c52012-04-26 10:00:04 +0200327 PM2XXX_INT3_ITCHCCWD | PM2XXX_INT3_ITCHCVWD)) {
328 dev_dbg(pm2->dev,
329 "Watchdog occured for precharge, CC and CV charge\n");
330 }
331
332 return ret;
333}
334
Olivier Clergeaud006f82d2012-05-14 16:50:29 +0200335static int pm2_int_reg3(void *pm2_data, int val)
Michel JAOUEN01ec8c52012-04-26 10:00:04 +0200336{
Olivier Clergeaud006f82d2012-05-14 16:50:29 +0200337 struct pm2xxx_charger *pm2 = pm2_data;
Michel JAOUEN01ec8c52012-04-26 10:00:04 +0200338 int ret = 0;
339
Olivier Clergeaud006f82d2012-05-14 16:50:29 +0200340 if (val & (PM2XXX_INT4_ITCHARGINGON)) {
Michel JAOUEN01ec8c52012-04-26 10:00:04 +0200341 dev_dbg(pm2->dev ,
342 "chargind operation has started\n");
343 }
344
Olivier Clergeaud006f82d2012-05-14 16:50:29 +0200345 if (val & (PM2XXX_INT4_ITVRESUME)) {
Michel JAOUEN01ec8c52012-04-26 10:00:04 +0200346 dev_dbg(pm2->dev,
347 "battery discharged down to VResume threshold\n");
348 }
349
Olivier Clergeaud006f82d2012-05-14 16:50:29 +0200350 if (val & (PM2XXX_INT4_ITBATTFULL)) {
Michel JAOUEN01ec8c52012-04-26 10:00:04 +0200351 dev_dbg(pm2->dev , "battery fully detected\n");
352 }
353
Olivier Clergeaud006f82d2012-05-14 16:50:29 +0200354 if (val & (PM2XXX_INT4_ITCVPHASE)) {
Michel JAOUEN01ec8c52012-04-26 10:00:04 +0200355 dev_dbg(pm2->dev, "CV phase enter with 0.5C charging\n");
356 }
357
Olivier Clergeaud006f82d2012-05-14 16:50:29 +0200358 if (val & (PM2XXX_INT4_ITVPWR2OVV | PM2XXX_INT4_ITVPWR1OVV)) {
Michel JAOUEN01ec8c52012-04-26 10:00:04 +0200359 pm2->failure_case = VPWR_OVV;
Olivier Clergeaud006f82d2012-05-14 16:50:29 +0200360 ret = pm2xxx_charger_ovv_mngt(pm2, val &
Michel JAOUEN01ec8c52012-04-26 10:00:04 +0200361 (PM2XXX_INT4_ITVPWR2OVV | PM2XXX_INT4_ITVPWR1OVV));
362 dev_dbg(pm2->dev, "VPWR/VSYSTEM overvoltage detected\n");
363 }
364
Olivier Clergeaud006f82d2012-05-14 16:50:29 +0200365 if (val & (PM2XXX_INT4_S_ITBATTEMPCOLD |
Michel JAOUEN01ec8c52012-04-26 10:00:04 +0200366 PM2XXX_INT4_S_ITBATTEMPHOT)) {
Olivier Clergeaud006f82d2012-05-14 16:50:29 +0200367 ret = pm2xxx_charger_batt_therm_mngt(pm2, val &
368 (PM2XXX_INT4_S_ITBATTEMPCOLD |
369 PM2XXX_INT4_S_ITBATTEMPHOT));
Michel JAOUEN01ec8c52012-04-26 10:00:04 +0200370 dev_dbg(pm2->dev, "BTEMP is too Low/High\n");
371 }
372
373 return ret;
374}
375
Olivier Clergeaud006f82d2012-05-14 16:50:29 +0200376static int pm2_int_reg4(void *pm2_data, int val)
Michel JAOUEN01ec8c52012-04-26 10:00:04 +0200377{
Olivier Clergeaud006f82d2012-05-14 16:50:29 +0200378 struct pm2xxx_charger *pm2 = pm2_data;
Michel JAOUEN01ec8c52012-04-26 10:00:04 +0200379 int ret = 0;
380
Olivier Clergeaud006f82d2012-05-14 16:50:29 +0200381 if (val & PM2XXX_INT5_ITVSYSTEMOVV) {
Michel JAOUEN01ec8c52012-04-26 10:00:04 +0200382 pm2->failure_case = VSYSTEM_OVV;
Olivier Clergeaud006f82d2012-05-14 16:50:29 +0200383 ret = pm2xxx_charger_ovv_mngt(pm2, val &
Michel JAOUEN01ec8c52012-04-26 10:00:04 +0200384 PM2XXX_INT5_ITVSYSTEMOVV);
385 dev_dbg(pm2->dev, "VSYSTEM overvoltage detected\n");
386 }
387
Olivier Clergeaud006f82d2012-05-14 16:50:29 +0200388 if (val & (PM2XXX_INT5_ITTHERMALWARNINGFALL |
Michel JAOUEN01ec8c52012-04-26 10:00:04 +0200389 PM2XXX_INT5_ITTHERMALWARNINGRISE |
390 PM2XXX_INT5_ITTHERMALSHUTDOWNFALL |
391 PM2XXX_INT5_ITTHERMALSHUTDOWNRISE)) {
392 dev_dbg(pm2->dev, "BTEMP die temperature is too Low/High\n");
Olivier Clergeaud006f82d2012-05-14 16:50:29 +0200393 ret = pm2xxx_charger_die_therm_mngt(pm2, val &
Michel JAOUEN01ec8c52012-04-26 10:00:04 +0200394 (PM2XXX_INT5_ITTHERMALWARNINGFALL |
395 PM2XXX_INT5_ITTHERMALWARNINGRISE |
396 PM2XXX_INT5_ITTHERMALSHUTDOWNFALL |
397 PM2XXX_INT5_ITTHERMALSHUTDOWNRISE));
398 }
399
400 return ret;
401}
402
Olivier Clergeaud006f82d2012-05-14 16:50:29 +0200403static int pm2_int_reg5(void *pm2_data, int val)
Michel JAOUEN01ec8c52012-04-26 10:00:04 +0200404{
Olivier Clergeaud006f82d2012-05-14 16:50:29 +0200405 struct pm2xxx_charger *pm2 = pm2_data;
406 int ret = 0;
Michel JAOUEN01ec8c52012-04-26 10:00:04 +0200407
Olivier Clergeaud006f82d2012-05-14 16:50:29 +0200408
409 if (val & (PM2XXX_INT6_ITVPWR2DROP | PM2XXX_INT6_ITVPWR1DROP)) {
Michel JAOUEN01ec8c52012-04-26 10:00:04 +0200410 dev_dbg(pm2->dev, "VMPWR drop to VBAT level\n");
411 }
412
Olivier Clergeaud006f82d2012-05-14 16:50:29 +0200413 if (val & (PM2XXX_INT6_ITVPWR2VALIDRISE |
414 PM2XXX_INT6_ITVPWR1VALIDRISE |
415 PM2XXX_INT6_ITVPWR2VALIDFALL |
416 PM2XXX_INT6_ITVPWR1VALIDFALL)) {
Michel JAOUEN01ec8c52012-04-26 10:00:04 +0200417 dev_dbg(pm2->dev, "Falling/Rising edge on WPWR1/2\n");
418 }
419
Olivier Clergeaud006f82d2012-05-14 16:50:29 +0200420 return ret;
Michel JAOUEN01ec8c52012-04-26 10:00:04 +0200421}
422
423static irqreturn_t pm2xxx_irq_int(int irq, void *data)
424{
425 struct pm2xxx_charger *pm2 = data;
Olivier Clergeaud006f82d2012-05-14 16:50:29 +0200426 struct pm2xxx_interrupts *interrupt = pm2->pm2_int;
427 int i;
Michel JAOUEN01ec8c52012-04-26 10:00:04 +0200428
Olivier Clergeaud006f82d2012-05-14 16:50:29 +0200429 for (i = 0; i < PM2XXX_NUM_INT_REG; i++) {
430 pm2xxx_reg_read(pm2,
431 pm2xxx_interrupt_registers[i],
432 &(interrupt->reg[i]));
433
434 if (interrupt->reg[i] > 0)
435 interrupt->handler[i](pm2, interrupt->reg[i]);
Michel JAOUEN01ec8c52012-04-26 10:00:04 +0200436 }
437
Michel JAOUEN01ec8c52012-04-26 10:00:04 +0200438 return IRQ_HANDLED;
439}
440
441static int pm2xxx_charger_get_ac_voltage(struct pm2xxx_charger *pm2)
442{
443 int vch = 0;
444
445 if (pm2->ac.charger_connected) {
446 vch = ab8500_gpadc_convert(pm2->gpadc, MAIN_CHARGER_V);
447 if (vch < 0)
448 dev_err(pm2->dev, "%s gpadc conv failed,\n", __func__);
449 }
450
451 return vch;
452}
453
454static int pm2xxx_charger_get_ac_cv(struct pm2xxx_charger *pm2)
455{
456 int ret = 0;
457 u8 val;
458
459 if (pm2->ac.charger_connected && pm2->ac.charger_online) {
460
461 ret = pm2xxx_reg_read(pm2, PM2XXX_SRCE_REG_INT4, &val);
462 if (ret < 0) {
463 dev_err(pm2->dev, "%s pm2xxx read failed\n", __func__);
464 goto out;
465 }
466
467 if (val & PM2XXX_INT4_S_ITCVPHASE)
468 ret = PM2XXX_CONST_VOLT;
469 else
470 ret = PM2XXX_CONST_CURR;
471 }
472out:
473 return ret;
474}
475
476static int pm2xxx_charger_get_ac_current(struct pm2xxx_charger *pm2)
477{
478 int ich = 0;
479
480 if (pm2->ac.charger_online) {
481 ich = ab8500_gpadc_convert(pm2->gpadc, MAIN_CHARGER_C);
482 if (ich < 0)
483 dev_err(pm2->dev, "%s gpadc conv failed\n", __func__);
484 }
485
486 return ich;
487}
488
489static int pm2xxx_current_to_regval(int curr)
490{
491 int i;
492
493 if (curr < pm2xxx_charger_current_map[0])
494 return 0;
495
496 for (i = 1; i < ARRAY_SIZE(pm2xxx_charger_current_map); i++) {
497 if (curr < pm2xxx_charger_current_map[i])
498 return (i - 1);
499 }
500
501 i = ARRAY_SIZE(pm2xxx_charger_current_map) - 1;
502 if (curr == pm2xxx_charger_current_map[i])
503 return i;
504 else
505 return -EINVAL;
506}
507
508static int pm2xxx_voltage_to_regval(int curr)
509{
510 int i;
511
512 if (curr < pm2xxx_charger_voltage_map[0])
513 return 0;
514
515 for (i = 1; i < ARRAY_SIZE(pm2xxx_charger_voltage_map); i++) {
516 if (curr < pm2xxx_charger_voltage_map[i])
517 return i - 1;
518 }
519
520 i = ARRAY_SIZE(pm2xxx_charger_voltage_map) - 1;
521 if (curr == pm2xxx_charger_voltage_map[i])
522 return i;
523 else
524 return -EINVAL;
525}
526
527static int pm2xxx_charger_update_charger_current(struct ux500_charger *charger,
528 int ich_out)
529{
530 int ret;
531 int curr_index;
532 struct pm2xxx_charger *pm2;
533 u8 val;
534
535 if (charger->psy.type == POWER_SUPPLY_TYPE_MAINS)
536 pm2 = to_pm2xxx_charger_ac_device_info(charger);
537 else
538 return -ENXIO;
539
540 curr_index = pm2xxx_current_to_regval(ich_out);
541 if (curr_index < 0) {
542 dev_err(pm2->dev,
Olivier Clergeaud006f82d2012-05-14 16:50:29 +0200543 "Charger current too high, charging not started\n");
Michel JAOUEN01ec8c52012-04-26 10:00:04 +0200544 return -ENXIO;
545 }
546
547 ret = pm2xxx_reg_read(pm2, PM2XXX_BATT_CTRL_REG6, &val);
548 if (ret >= 0) {
549 val &= ~PM2XXX_DIR_CH_CC_CURRENT_MASK;
550 val |= curr_index;
551 ret = pm2xxx_reg_write(pm2, PM2XXX_BATT_CTRL_REG6, val);
552 if (ret < 0) {
553 dev_err(pm2->dev,
554 "%s write failed\n", __func__);
555 }
556 }
557 else
558 dev_err(pm2->dev, "%s read failed\n", __func__);
559
560 return ret;
561}
562
563static int pm2xxx_charger_ac_get_property(struct power_supply *psy,
564 enum power_supply_property psp,
565 union power_supply_propval *val)
566{
567 struct pm2xxx_charger *pm2;
568
569 pm2 = to_pm2xxx_charger_ac_device_info(psy_to_ux500_charger(psy));
570
571 switch (psp) {
572 case POWER_SUPPLY_PROP_HEALTH:
573 if (pm2->flags.mainextchnotok)
574 val->intval = POWER_SUPPLY_HEALTH_UNSPEC_FAILURE;
575 else if (pm2->ac.wd_expired)
576 val->intval = POWER_SUPPLY_HEALTH_DEAD;
577 else if (pm2->flags.main_thermal_prot)
578 val->intval = POWER_SUPPLY_HEALTH_OVERHEAT;
579 else
580 val->intval = POWER_SUPPLY_HEALTH_GOOD;
581 break;
582 case POWER_SUPPLY_PROP_ONLINE:
583 val->intval = pm2->ac.charger_online;
584 break;
585 case POWER_SUPPLY_PROP_PRESENT:
586 val->intval = pm2->ac.charger_connected;
587 break;
588 case POWER_SUPPLY_PROP_VOLTAGE_NOW:
589 pm2->ac.charger_voltage = pm2xxx_charger_get_ac_voltage(pm2);
590 val->intval = pm2->ac.charger_voltage * 1000;
591 break;
592 case POWER_SUPPLY_PROP_VOLTAGE_AVG:
593 pm2->ac.cv_active = pm2xxx_charger_get_ac_cv(pm2);
594 val->intval = pm2->ac.cv_active;
595 break;
596 case POWER_SUPPLY_PROP_CURRENT_NOW:
597 val->intval = pm2xxx_charger_get_ac_current(pm2) * 1000;
598 break;
599 default:
600 return -EINVAL;
601 }
602 return 0;
603}
604
605static int pm2xxx_charging_init(struct pm2xxx_charger *pm2)
606{
607 int ret = 0;
608
609 /* enable CC and CV watchdog */
610 ret = pm2xxx_reg_write(pm2, PM2XXX_BATT_CTRL_REG3,
611 (PM2XXX_CH_WD_CV_PHASE_60MIN | PM2XXX_CH_WD_CC_PHASE_60MIN));
612 if( ret < 0)
613 return ret;
614
615 /* enable precharge watchdog */
616 ret = pm2xxx_reg_write(pm2, PM2XXX_BATT_CTRL_REG4,
617 PM2XXX_CH_WD_PRECH_PHASE_60MIN);
618
Olivier Clergeaud006f82d2012-05-14 16:50:29 +0200619 /* Disable auto timeout */
620 ret = pm2xxx_reg_write(pm2, PM2XXX_BATT_CTRL_REG5,
621 PM2XXX_CH_WD_AUTO_TIMEOUT_20MIN);
622
623 /*
624 * EOC current level = 100mA
625 * Precharge current level = 100mA
626 * CC current level = 1000mA
627 */
628 ret = pm2xxx_reg_write(pm2, PM2XXX_BATT_CTRL_REG6,
629 (PM2XXX_DIR_CH_CC_CURRENT_1000MA |
630 PM2XXX_CH_PRECH_CURRENT_100MA |
631 PM2XXX_CH_EOC_CURRENT_100MA));
632
633 /*
634 * recharge threshold = 3.8V
635 * Precharge to CC threshold = 2.9V
636 */
637 ret = pm2xxx_reg_write(pm2, PM2XXX_BATT_CTRL_REG7,
638 (PM2XXX_CH_PRECH_VOL_2_9 | PM2XXX_CH_VRESUME_VOL_3_8));
639
640 /* float voltage charger level = 4.2V */
641 ret = pm2xxx_reg_write(pm2, PM2XXX_BATT_CTRL_REG8,
642 PM2XXX_CH_VOLT_4_2);
643
644 /* Voltage drop between VBAT and VSYS in HW charging = 300mV */
645 ret = pm2xxx_reg_write(pm2, PM2XXX_BATT_CTRL_REG9,
646 (PM2XXX_CH_150MV_DROP_300MV | PM2XXX_CHARCHING_INFO_DIS |
647 PM2XXX_CH_CC_REDUCED_CURRENT_IDENT |
648 PM2XXX_CH_CC_MODEDROP_DIS));
649
650 /* Input charger level of over voltage = 10V */
651 ret = pm2xxx_reg_write(pm2, PM2XXX_INP_VOLT_VPWR2,
652 PM2XXX_VPWR2_OVV_10);
653 ret = pm2xxx_reg_write(pm2, PM2XXX_INP_VOLT_VPWR1,
654 PM2XXX_VPWR1_OVV_10);
655
656 /* Input charger drop */
657 ret = pm2xxx_reg_write(pm2, PM2XXX_INP_DROP_VPWR2,
658 (PM2XXX_VPWR2_HW_OPT_DIS | PM2XXX_VPWR2_VALID_DIS |
659 PM2XXX_VPWR2_DROP_DIS));
660 ret = pm2xxx_reg_write(pm2, PM2XXX_INP_DROP_VPWR1,
661 (PM2XXX_VPWR1_HW_OPT_DIS | PM2XXX_VPWR1_VALID_DIS |
662 PM2XXX_VPWR1_DROP_DIS));
663
664 /* Disable battery low monitoring */
665 ret = pm2xxx_reg_write(pm2, PM2XXX_BATT_LOW_LEV_COMP_REG,
666 PM2XXX_VBAT_LOW_MONITORING_DIS);
667
668 /* Disable LED */
669 ret = pm2xxx_reg_write(pm2, PM2XXX_LED_CTRL_REG,
670 PM2XXX_LED_SELECT_DIS);
671
Michel JAOUEN01ec8c52012-04-26 10:00:04 +0200672 return ret;
673}
674
675static int pm2xxx_charger_ac_en(struct ux500_charger *charger,
676 int enable, int vset, int iset)
677{
678 int ret;
679 int volt_index;
680 int curr_index;
681 u8 val;
682
683 struct pm2xxx_charger *pm2 = to_pm2xxx_charger_ac_device_info(charger);
684
685 if (enable) {
686 if (!pm2->ac.charger_connected) {
687 dev_dbg(pm2->dev, "AC charger not connected\n");
688 return -ENXIO;
689 }
690
691 dev_dbg(pm2->dev, "Enable AC: %dmV %dmA\n", vset, iset);
692 if (!pm2->vddadc_en_ac) {
693 regulator_enable(pm2->regu);
694 pm2->vddadc_en_ac = true;
695 }
696
697 ret = pm2xxx_charging_init(pm2);
698 if (ret < 0) {
699 dev_err(pm2->dev, "%s charging init failed\n",
700 __func__);
701 goto error_occured;
702 }
703
704 volt_index = pm2xxx_voltage_to_regval(vset);
705 curr_index = pm2xxx_current_to_regval(iset);
706
707 if (volt_index < 0 || curr_index < 0) {
708 dev_err(pm2->dev,
709 "Charger voltage or current too high, "
710 "charging not started\n");
711 return -ENXIO;
712 }
713
714 ret = pm2xxx_reg_read(pm2, PM2XXX_BATT_CTRL_REG8, &val);
715 if (ret >= 0) {
716 val &= ~PM2XXX_CH_VOLT_MASK;
717 val |= volt_index;
718 ret = pm2xxx_reg_write(pm2, PM2XXX_BATT_CTRL_REG8, val);
719
720 if (ret < 0) {
721 dev_err(pm2->dev,
722 "%s write failed\n", __func__);
723 goto error_occured;
724 }
725 else
726 dev_err(pm2->dev, "%s read failed\n", __func__);
727 }
728
729 ret = pm2xxx_reg_read(pm2, PM2XXX_BATT_CTRL_REG6, &val);
730 if (ret >= 0) {
731 val &= ~PM2XXX_DIR_CH_CC_CURRENT_MASK;
732 val |= curr_index;
733 ret = pm2xxx_reg_write(pm2, PM2XXX_BATT_CTRL_REG6, val);
734 if (ret < 0) {
735 dev_err(pm2->dev,
736 "%s write failed\n", __func__);
737 goto error_occured;
738 }
739 else
740 dev_err(pm2->dev, "%s read failed\n", __func__);
741 }
742
743 if (!pm2->bat->enable_overshoot) {
744 ret = pm2xxx_reg_read(pm2, PM2XXX_LED_CTRL_REG, &val);
745 if (ret >= 0) {
746 val |= PM2XXX_ANTI_OVERSHOOT_EN;
747 ret = pm2xxx_reg_write(pm2, PM2XXX_LED_CTRL_REG,
748 val);
749 if (ret < 0){
750 dev_err(pm2->dev, "%s write failed\n",
751 __func__);
752 goto error_occured;
753 }
754 }
755 else
756 dev_err(pm2->dev, "%s read failed\n", __func__);
757 }
758
759 ret = pm2xxx_charging_enable_mngt(pm2);
760 if (ret) {
761 dev_err(pm2->dev, "%s write failed\n", __func__);
762 goto error_occured;
763 }
764
765 pm2->ac.charger_online = 1;
766 } else {
767 pm2->ac.charger_online = 0;
768 pm2->ac.wd_expired = false;
769
770 /* Disable regulator if enabled */
771 if (pm2->vddadc_en_ac) {
772 regulator_disable(pm2->regu);
773 pm2->vddadc_en_ac = false;
774 }
775
776 ret = pm2xxx_charging_disable_mngt(pm2);
777 if (ret) {
778 dev_err(pm2->dev, "%s write failed\n", __func__);
779 return ret;
780 }
781
782 dev_dbg(pm2->dev, "PM2301: " "Disabled AC charging\n");
783 }
784 power_supply_changed(&pm2->ac_chg.psy);
785
786error_occured:
787 return ret;
788}
789
790static int pm2xxx_charger_watchdog_kick(struct ux500_charger *charger)
791{
792 int ret;
793 struct pm2xxx_charger *pm2;
794
795 if (charger->psy.type == POWER_SUPPLY_TYPE_MAINS)
796 pm2 = to_pm2xxx_charger_ac_device_info(charger);
797 else
798 return -ENXIO;
799
800 ret = pm2xxx_reg_write(pm2, PM2XXX_BATT_WD_KICK, WD_TIMER);
801 if (ret)
802 dev_err(pm2->dev, "Failed to kick WD!\n");
803
804 return ret;
805}
806
807static void pm2xxx_charger_ac_work(struct work_struct *work)
808{
809 struct pm2xxx_charger *pm2 = container_of(work,
810 struct pm2xxx_charger, ac_work);
811
812
813 power_supply_changed(&pm2->ac_chg.psy);
814 sysfs_notify(&pm2->ac_chg.psy.dev->kobj, NULL, "present");
815};
816
817static void pm2xxx_charger_check_main_thermal_prot_work(
818 struct work_struct *work)
819{
820};
821
Olivier Clergeaud006f82d2012-05-14 16:50:29 +0200822static struct pm2xxx_interrupts pm2xxx_int = {
823 .handler[0] = pm2_int_reg0,
824 .handler[1] = pm2_int_reg1,
825 .handler[2] = pm2_int_reg2,
826 .handler[3] = pm2_int_reg3,
827 .handler[4] = pm2_int_reg4,
828 .handler[5] = pm2_int_reg5,
829};
830
Michel JAOUEN01ec8c52012-04-26 10:00:04 +0200831static struct pm2xxx_irq pm2xxx_charger_irq[] = {
832 {"PM2XXX_IRQ_INT", pm2xxx_irq_int},
833};
834
835static int pm2xxx_wall_charger_resume(struct i2c_client *i2c_client)
836{
837 return 0;
838}
839
840static int pm2xxx_wall_charger_suspend(struct i2c_client *i2c_client,
841 pm_message_t state)
842{
843 return 0;
844}
845
846static int __devinit pm2xxx_wall_charger_probe(struct i2c_client *i2c_client,
847 const struct i2c_device_id *id)
848{
849 struct pm2xxx_platform_data *pl_data = i2c_client->dev.platform_data;
850 struct pm2xxx_charger *pm2;
851 int ret = 0;
852 u8 val;
853
854 pm2 = kzalloc(sizeof(struct pm2xxx_charger), GFP_KERNEL);
855 if (!pm2) {
856 dev_err(pm2->dev, "pm2xxx_charger allocation failed\n");
857 return -ENOMEM;
858 }
859
860 /* get parent data */
861 pm2->dev = &i2c_client->dev;
862 pm2->gpadc = ab8500_gpadc_get("ab8500-gpadc.0");
863
Olivier Clergeaud006f82d2012-05-14 16:50:29 +0200864 pm2->pm2_int = &pm2xxx_int;
865
Michel JAOUEN01ec8c52012-04-26 10:00:04 +0200866 /* get charger spcific platform data */
867 if (!pl_data->wall_charger) {
868 dev_err(pm2->dev, "no charger platform data supplied\n");
869 ret = -EINVAL;
870 goto free_device_info;
871 }
872
873 pm2->pdata = pl_data->wall_charger;
874
875 /* get battery specific platform data */
876 if (!pl_data->battery) {
877 dev_err(pm2->dev, "no battery platform data supplied\n");
878 ret = -EINVAL;
879 goto free_device_info;
880 }
881
882 pm2->bat = pl_data->battery;
883
884 if (!i2c_check_functionality(i2c_client->adapter,
885 I2C_FUNC_SMBUS_BYTE_DATA |
886 I2C_FUNC_SMBUS_READ_WORD_DATA)) {
887 ret = -ENODEV;
888 dev_info(pm2->dev, "pm2301 i2c_check_functionality failed\n");
889 goto free_device_info;
890 }
891
892 pm2->config.pm2xxx_i2c = i2c_client;
893 pm2->config.pm2xxx_id = (struct i2c_device_id *) id;
894 i2c_set_clientdata(i2c_client, pm2);
895
896 /* AC supply */
897 /* power_supply base class */
898 pm2->ac_chg.psy.name = pm2->pdata->label;
899 pm2->ac_chg.psy.type = POWER_SUPPLY_TYPE_MAINS;
900 pm2->ac_chg.psy.properties = pm2xxx_charger_ac_props;
901 pm2->ac_chg.psy.num_properties = ARRAY_SIZE(pm2xxx_charger_ac_props);
902 pm2->ac_chg.psy.get_property = pm2xxx_charger_ac_get_property;
903 pm2->ac_chg.psy.supplied_to = pm2->pdata->supplied_to;
904 pm2->ac_chg.psy.num_supplicants = pm2->pdata->num_supplicants;
905 /* pm2xxx_charger sub-class */
906 pm2->ac_chg.ops.enable = &pm2xxx_charger_ac_en;
907 pm2->ac_chg.ops.kick_wd = &pm2xxx_charger_watchdog_kick;
908 pm2->ac_chg.ops.update_curr = &pm2xxx_charger_update_charger_current;
909 pm2->ac_chg.max_out_volt = pm2xxx_charger_voltage_map[
910 ARRAY_SIZE(pm2xxx_charger_voltage_map) - 1];
911 pm2->ac_chg.max_out_curr = pm2xxx_charger_current_map[
912 ARRAY_SIZE(pm2xxx_charger_current_map) - 1];
Olivier Clergeaud006f82d2012-05-14 16:50:29 +0200913 pm2->ac_chg.enabled = true;
Michel JAOUEN01ec8c52012-04-26 10:00:04 +0200914
915 /* Create a work queue for the charger */
916 pm2->charger_wq =
917 create_singlethread_workqueue("pm2xxx_charger_wq");
918 if (pm2->charger_wq == NULL) {
919 dev_err(pm2->dev, "failed to create work queue\n");
920 goto free_device_info;
921 }
922
923 /* Init work for charger detection */
924 INIT_WORK(&pm2->ac_work, pm2xxx_charger_ac_work);
925
926 /* Init work for checking HW status */
927 INIT_WORK(&pm2->check_main_thermal_prot_work,
928 pm2xxx_charger_check_main_thermal_prot_work);
929
930 /*
931 * VDD ADC supply needs to be enabled from this driver when there
932 * is a charger connected to avoid erroneous BTEMP_HIGH/LOW
933 * interrupts during charging
934 */
935 pm2->regu = regulator_get(pm2->dev, "vddadc");
936 if (IS_ERR(pm2->regu)) {
937 ret = PTR_ERR(pm2->regu);
938 dev_err(pm2->dev, "failed to get vddadc regulator\n");
939 goto free_charger_wq;
940 }
941
942 /* Register AC charger class */
943 ret = power_supply_register(pm2->dev, &pm2->ac_chg.psy);
944 if (ret) {
945 dev_err(pm2->dev, "failed to register AC charger\n");
946 goto free_regulator;
947 }
948
949 /* Register interrupts */
950 ret = request_threaded_irq(pm2->pdata->irq_number, NULL,
951 pm2xxx_charger_irq[0].isr,
952 pm2->pdata->irq_type,
953 pm2xxx_charger_irq[0].name, pm2);
954
955 if (ret != 0) {
956 dev_err(pm2->dev, "failed to request %s IRQ %d: %d\n",
957 pm2xxx_charger_irq[0].name, pm2->pdata->irq_number, ret);
958 goto unregister_pm2xxx_charger;
959 }
960
961 /*
962 * I2C Read/Write will fail, if AC adaptor is not connected.
963 * fix the charger detection mechanism.
964 */
965 ret = pm2xxx_charger_detection(pm2, &val);
966
967 if ((ret == 0) && val) {
968 pm2->ac.charger_connected = 1;
969 pm2->ac_conn = true;
970 power_supply_changed(&pm2->ac_chg.psy);
971 sysfs_notify(&pm2->ac_chg.psy.dev->kobj, NULL, "present");
972 }
973
974 return 0;
975
976unregister_pm2xxx_charger:
977 /* unregister power supply */
978 power_supply_unregister(&pm2->ac_chg.psy);
979free_regulator:
980 /* disable the regulator */
981 regulator_put(pm2->regu);
982free_charger_wq:
983 destroy_workqueue(pm2->charger_wq);
984free_device_info:
985 kfree(pm2);
986 return ret;
987}
988
989static int __devexit pm2xxx_wall_charger_remove(struct i2c_client *i2c_client)
990{
991 struct pm2xxx_charger *pm2 = i2c_get_clientdata(i2c_client);
992
993 /* Disable AC charging */
994 pm2xxx_charger_ac_en(&pm2->ac_chg, false, 0, 0);
995
996 /* Disable interrupts */
997 free_irq(pm2->pdata->irq_number, pm2);
998
999 /* Delete the work queue */
1000 destroy_workqueue(pm2->charger_wq);
1001
1002 flush_scheduled_work();
1003
1004 /* disable the regulator */
1005 regulator_put(pm2->regu);
1006
1007 power_supply_unregister(&pm2->ac_chg.psy);
1008
1009 kfree(pm2);
1010
1011 return 0;
1012}
1013
1014static const struct i2c_device_id pm2xxx_id[] = {
1015 { "pm2301", 0 },
1016 { }
1017};
1018
1019MODULE_DEVICE_TABLE(i2c, pm2xxx_id);
1020
1021static struct i2c_driver pm2xxx_charger_driver = {
1022 .probe = pm2xxx_wall_charger_probe,
1023 .remove = __devexit_p(pm2xxx_wall_charger_remove),
1024 .suspend = pm2xxx_wall_charger_suspend,
1025 .resume = pm2xxx_wall_charger_resume,
1026 .driver = {
1027 .name = "pm2xxx-wall_charger",
1028 .owner = THIS_MODULE,
1029 },
1030 .id_table = pm2xxx_id,
1031};
1032
1033static int __init pm2xxx_charger_init(void)
1034{
1035 return i2c_add_driver(&pm2xxx_charger_driver);
1036}
1037
1038static void __exit pm2xxx_charger_exit(void)
1039{
1040 i2c_del_driver(&pm2xxx_charger_driver);
1041}
1042
1043subsys_initcall_sync(pm2xxx_charger_init);
1044module_exit(pm2xxx_charger_exit);
1045
1046MODULE_LICENSE("GPL v2");
1047MODULE_AUTHOR("Rajkumar kasirajan, Olivier Launay");
1048MODULE_ALIAS("platform:pm2xxx-charger");
1049MODULE_DESCRIPTION("PM2xxx charger management driver");
1050