blob: 6775fbae9ed277bef79f85b71eb0ef9e76bb5638 [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-charger.h>
20#include <linux/mfd/pm8xxx/pm8921-bms.h>
21#include <linux/mfd/pm8921-adc.h>
22#include <linux/mfd/pm8xxx/core.h>
23#include <linux/interrupt.h>
24#include <linux/power_supply.h>
25#include <linux/delay.h>
26#include <linux/bitops.h>
27#include <linux/workqueue.h>
28#include <linux/debugfs.h>
29#include <linux/slab.h>
30
31#include <mach/msm_xo.h>
32#include <mach/msm_hsusb.h>
33
34#define CHG_BUCK_CLOCK_CTRL 0x14
35
36#define PBL_ACCESS1 0x04
37#define PBL_ACCESS2 0x05
38#define SYS_CONFIG_1 0x06
39#define SYS_CONFIG_2 0x07
40#define CHG_CNTRL 0x204
41#define CHG_IBAT_MAX 0x205
42#define CHG_TEST 0x206
43#define CHG_BUCK_CTRL_TEST1 0x207
44#define CHG_BUCK_CTRL_TEST2 0x208
45#define CHG_BUCK_CTRL_TEST3 0x209
46#define COMPARATOR_OVERRIDE 0x20A
47#define PSI_TXRX_SAMPLE_DATA_0 0x20B
48#define PSI_TXRX_SAMPLE_DATA_1 0x20C
49#define PSI_TXRX_SAMPLE_DATA_2 0x20D
50#define PSI_TXRX_SAMPLE_DATA_3 0x20E
51#define PSI_CONFIG_STATUS 0x20F
52#define CHG_IBAT_SAFE 0x210
53#define CHG_ITRICKLE 0x211
54#define CHG_CNTRL_2 0x212
55#define CHG_VBAT_DET 0x213
56#define CHG_VTRICKLE 0x214
57#define CHG_ITERM 0x215
58#define CHG_CNTRL_3 0x216
59#define CHG_VIN_MIN 0x217
60#define CHG_TWDOG 0x218
61#define CHG_TTRKL_MAX 0x219
62#define CHG_TEMP_THRESH 0x21A
63#define CHG_TCHG_MAX 0x21B
64#define USB_OVP_CONTROL 0x21C
65#define DC_OVP_CONTROL 0x21D
66#define USB_OVP_TEST 0x21E
67#define DC_OVP_TEST 0x21F
68#define CHG_VDD_MAX 0x220
69#define CHG_VDD_SAFE 0x221
70#define CHG_VBAT_BOOT_THRESH 0x222
71#define USB_OVP_TRIM 0x355
72#define BUCK_CONTROL_TRIM1 0x356
73#define BUCK_CONTROL_TRIM2 0x357
74#define BUCK_CONTROL_TRIM3 0x358
75#define BUCK_CONTROL_TRIM4 0x359
76#define CHG_DEFAULTS_TRIM 0x35A
77#define CHG_ITRIM 0x35B
78#define CHG_TTRIM 0x35C
79#define CHG_COMP_OVR 0x20A
80
81enum chg_fsm_state {
82 FSM_STATE_OFF_0 = 0,
83 FSM_STATE_BATFETDET_START_12 = 12,
84 FSM_STATE_BATFETDET_END_16 = 16,
85 FSM_STATE_ON_CHG_HIGHI_1 = 1,
86 FSM_STATE_ATC_2A = 2,
87 FSM_STATE_ATC_2B = 18,
88 FSM_STATE_ON_BAT_3 = 3,
89 FSM_STATE_ATC_FAIL_4 = 4 ,
90 FSM_STATE_DELAY_5 = 5,
91 FSM_STATE_ON_CHG_AND_BAT_6 = 6,
92 FSM_STATE_FAST_CHG_7 = 7,
93 FSM_STATE_TRKL_CHG_8 = 8,
94 FSM_STATE_CHG_FAIL_9 = 9,
95 FSM_STATE_EOC_10 = 10,
96 FSM_STATE_ON_CHG_VREGOK_11 = 11,
97 FSM_STATE_ATC_PAUSE_13 = 13,
98 FSM_STATE_FAST_CHG_PAUSE_14 = 14,
99 FSM_STATE_TRKL_CHG_PAUSE_15 = 15,
100 FSM_STATE_START_BOOT = 20,
101 FSM_STATE_FLCB_VREGOK = 21,
102 FSM_STATE_FLCB = 22,
103};
104
105enum pmic_chg_interrupts {
106 USBIN_VALID_IRQ = 0,
107 USBIN_OV_IRQ,
108 BATT_INSERTED_IRQ,
109 VBATDET_LOW_IRQ,
110 USBIN_UV_IRQ,
111 VBAT_OV_IRQ,
112 CHGWDOG_IRQ,
113 VCP_IRQ,
114 ATCDONE_IRQ,
115 ATCFAIL_IRQ,
116 CHGDONE_IRQ,
117 CHGFAIL_IRQ,
118 CHGSTATE_IRQ,
119 LOOP_CHANGE_IRQ,
120 FASTCHG_IRQ,
121 TRKLCHG_IRQ,
122 BATT_REMOVED_IRQ,
123 BATTTEMP_HOT_IRQ,
124 CHGHOT_IRQ,
125 BATTTEMP_COLD_IRQ,
126 CHG_GONE_IRQ,
127 BAT_TEMP_OK_IRQ,
128 COARSE_DET_LOW_IRQ,
129 VDD_LOOP_IRQ,
130 VREG_OV_IRQ,
131 VBATDET_IRQ,
132 BATFET_IRQ,
133 PSI_IRQ,
134 DCIN_VALID_IRQ,
135 DCIN_OV_IRQ,
136 DCIN_UV_IRQ,
137 PM_CHG_MAX_INTS,
138};
139
140struct bms_notify {
141 int is_charging;
142 struct work_struct work;
143};
144
145/**
146 * struct pm8921_chg_chip -device information
147 * @dev: device pointer to access the parent
148 * @is_usb_path_used: indicates whether USB charging is used at all
149 * @is_usb_path_used: indicates whether DC charging is used at all
150 * @usb_present: present status of usb
151 * @dc_present: present status of dc
152 * @usb_charger_current: usb current to charge the battery with used when
153 * the usb path is enabled or charging is resumed
154 * @safety_time: max time for which charging will happen
155 * @update_time: how frequently the userland needs to be updated
156 * @max_voltage: the max volts the batt should be charged up to
157 * @min_voltage: the min battery voltage before turning the FETon
158 * @resume_voltage: the voltage at which the battery should resume
159 * charging
160 * @term_current: The charging based term current
161 *
162 */
163struct pm8921_chg_chip {
164 struct device *dev;
165 unsigned int usb_present;
166 unsigned int dc_present;
167 unsigned int usb_charger_current;
168 unsigned int pmic_chg_irq[PM_CHG_MAX_INTS];
169 unsigned int safety_time;
170 unsigned int update_time;
171 unsigned int max_voltage;
172 unsigned int min_voltage;
173 unsigned int resume_voltage;
174 unsigned int term_current;
175 unsigned int vbat_channel;
176 struct power_supply usb_psy;
177 struct power_supply dc_psy;
178 struct power_supply batt_psy;
179 struct dentry *dent;
180 struct bms_notify bms_notify;
181 DECLARE_BITMAP(enabled_irqs, PM_CHG_MAX_INTS);
182};
183
184static int charging_disabled;
185
186static struct pm8921_chg_chip *the_chip;
187
188static int pm_chg_masked_write(struct pm8921_chg_chip *chip, u16 addr,
189 u8 mask, u8 val)
190{
191 int rc;
192 u8 reg;
193
194 rc = pm8xxx_readb(chip->dev->parent, addr, &reg);
195 if (rc) {
196 pr_err("pm8xxx_readb failed: addr=%03X, rc=%d\n", addr, rc);
197 return rc;
198 }
199 reg &= ~mask;
200 reg |= val & mask;
201 rc = pm8xxx_writeb(chip->dev->parent, addr, reg);
202 if (rc) {
203 pr_err("pm8xxx_writeb failed: addr=%03X, rc=%d\n", addr, rc);
204 return rc;
205 }
206 return 0;
207}
208
209#define CAPTURE_FSM_STATE_CMD 0xC2
210#define READ_BANK_7 0x70
211#define READ_BANK_4 0x40
212static int pm_chg_get_fsm_state(struct pm8921_chg_chip *chip)
213{
214 u8 temp;
215 int err, ret = 0;
216
217 temp = CAPTURE_FSM_STATE_CMD;
218 err = pm8xxx_writeb(chip->dev->parent, CHG_TEST, temp);
219 if (err) {
220 pr_err("Error %d writing %d to addr %d\n", err, temp, CHG_TEST);
221 return err;
222 }
223
224 temp = READ_BANK_7;
225 err = pm8xxx_writeb(chip->dev->parent, CHG_TEST, temp);
226 if (err) {
227 pr_err("Error %d writing %d to addr %d\n", err, temp, CHG_TEST);
228 return err;
229 }
230
231 err = pm8xxx_readb(chip->dev->parent, CHG_TEST, &temp);
232 if (err) {
233 pr_err("pm8xxx_readb fail: addr=%03X, rc=%d\n", CHG_TEST, err);
234 return err;
235 }
236 /* get the lower 4 bits */
237 ret = temp & 0xF;
238
239 temp = READ_BANK_4;
240 err = pm8xxx_writeb(chip->dev->parent, CHG_TEST, temp);
241 if (err) {
242 pr_err("Error %d writing %d to addr %d\n", err, temp, CHG_TEST);
243 return err;
244 }
245
246 err = pm8xxx_readb(chip->dev->parent, CHG_TEST, &temp);
247 if (err) {
248 pr_err("pm8xxx_readb fail: addr=%03X, rc=%d\n", CHG_TEST, err);
249 return err;
250 }
251 /* get the upper 1 bit */
252 ret |= (temp & 0x1) << 4;
253 return ret;
254}
255
256#define CHG_USB_SUSPEND_BIT BIT(2)
257static int pm_chg_usb_suspend_enable(struct pm8921_chg_chip *chip, int enable)
258{
259 return pm_chg_masked_write(chip, CHG_CNTRL_3, CHG_USB_SUSPEND_BIT,
260 enable ? CHG_USB_SUSPEND_BIT : 0);
261}
262
263#define CHG_EN_BIT BIT(7)
264static int pm_chg_auto_enable(struct pm8921_chg_chip *chip, int enable)
265{
266 return pm_chg_masked_write(chip, CHG_CNTRL_3, CHG_EN_BIT,
267 enable ? CHG_EN_BIT : 0);
268}
269
270#define CHG_CHARGE_DIS_BIT BIT(1)
271static int pm_chg_charge_dis(struct pm8921_chg_chip *chip, int disable)
272{
273 return pm_chg_masked_write(chip, CHG_CNTRL, CHG_CHARGE_DIS_BIT,
274 disable ? CHG_CHARGE_DIS_BIT : 0);
275}
276
277#define PM8921_CHG_V_MIN_MV 3240
278#define PM8921_CHG_V_STEP_MV 20
279#define PM8921_CHG_VDDMAX_MAX 4500
280#define PM8921_CHG_VDDMAX_MIN 3400
281#define PM8921_CHG_V_MASK 0x7F
282static int pm_chg_vddmax_set(struct pm8921_chg_chip *chip, int voltage)
283{
284 u8 temp;
285
286 if (voltage < PM8921_CHG_VDDMAX_MIN
287 || voltage > PM8921_CHG_VDDMAX_MAX) {
288 pr_err("bad mV=%d asked to set\n", voltage);
289 return -EINVAL;
290 }
291 temp = (voltage - PM8921_CHG_V_MIN_MV) / PM8921_CHG_V_STEP_MV;
292 pr_debug("voltage=%d setting %02x\n", voltage, temp);
293 return pm_chg_masked_write(chip, CHG_VDD_MAX, PM8921_CHG_V_MASK, temp);
294}
295
296#define PM8921_CHG_VDDSAFE_MIN 3400
297#define PM8921_CHG_VDDSAFE_MAX 4500
298static int pm_chg_vddsafe_set(struct pm8921_chg_chip *chip, int voltage)
299{
300 u8 temp;
301
302 if (voltage < PM8921_CHG_VDDSAFE_MIN
303 || voltage > PM8921_CHG_VDDSAFE_MAX) {
304 pr_err("bad mV=%d asked to set\n", voltage);
305 return -EINVAL;
306 }
307 temp = (voltage - PM8921_CHG_V_MIN_MV) / PM8921_CHG_V_STEP_MV;
308 pr_debug("voltage=%d setting %02x\n", voltage, temp);
309 return pm_chg_masked_write(chip, CHG_VDD_SAFE, PM8921_CHG_V_MASK, temp);
310}
311
312#define PM8921_CHG_VBATDET_MIN 3240
313#define PM8921_CHG_VBATDET_MAX 5780
314static int pm_chg_vbatdet_set(struct pm8921_chg_chip *chip, int voltage)
315{
316 u8 temp;
317
318 if (voltage < PM8921_CHG_VBATDET_MIN
319 || voltage > PM8921_CHG_VBATDET_MAX) {
320 pr_err("bad mV=%d asked to set\n", voltage);
321 return -EINVAL;
322 }
323 temp = (voltage - PM8921_CHG_V_MIN_MV) / PM8921_CHG_V_STEP_MV;
324 pr_debug("voltage=%d setting %02x\n", voltage, temp);
325 return pm_chg_masked_write(chip, CHG_VBAT_DET, PM8921_CHG_V_MASK, temp);
326}
327
328#define PM8921_CHG_IBATMAX_MIN 325
329#define PM8921_CHG_IBATMAX_MAX 2000
330#define PM8921_CHG_I_MIN_MA 225
331#define PM8921_CHG_I_STEP_MA 50
332#define PM8921_CHG_I_MASK 0x3F
333static int pm_chg_ibatmax_set(struct pm8921_chg_chip *chip, int chg_current)
334{
335 u8 temp;
336
337 if (chg_current < PM8921_CHG_IBATMAX_MIN
338 || chg_current > PM8921_CHG_IBATMAX_MAX) {
339 pr_err("bad mA=%d asked to set\n", chg_current);
340 return -EINVAL;
341 }
342 temp = (chg_current - PM8921_CHG_I_MIN_MA) / PM8921_CHG_I_STEP_MA;
343 return pm_chg_masked_write(chip, CHG_IBAT_MAX, PM8921_CHG_I_MASK, temp);
344}
345
346#define PM8921_CHG_IBATSAFE_MIN 225
347#define PM8921_CHG_IBATSAFE_MAX 3375
348static int pm_chg_ibatsafe_set(struct pm8921_chg_chip *chip, int chg_current)
349{
350 u8 temp;
351
352 if (chg_current < PM8921_CHG_IBATSAFE_MIN
353 || chg_current > PM8921_CHG_IBATSAFE_MAX) {
354 pr_err("bad mA=%d asked to set\n", chg_current);
355 return -EINVAL;
356 }
357 temp = (chg_current - PM8921_CHG_I_MIN_MA) / PM8921_CHG_I_STEP_MA;
358 return pm_chg_masked_write(chip, CHG_IBAT_SAFE,
359 PM8921_CHG_I_MASK, temp);
360}
361
362#define PM8921_CHG_ITERM_MIN 50
363#define PM8921_CHG_ITERM_MAX 200
364#define PM8921_CHG_ITERM_MIN_MA 50
365#define PM8921_CHG_ITERM_STEP_MA 10
366#define PM8921_CHG_ITERM_MASK 0xF
367static int pm_chg_iterm_set(struct pm8921_chg_chip *chip, int chg_current)
368{
369 u8 temp;
370
371 if (chg_current < PM8921_CHG_ITERM_MIN
372 || chg_current > PM8921_CHG_ITERM_MAX) {
373 pr_err("bad mA=%d asked to set\n", chg_current);
374 return -EINVAL;
375 }
376
377 temp = (chg_current - PM8921_CHG_ITERM_MIN_MA)
378 / PM8921_CHG_ITERM_STEP_MA;
379 return pm_chg_masked_write(chip, CHG_IBAT_SAFE, PM8921_CHG_ITERM_MASK,
380 temp);
381}
382
383#define PM8921_CHG_IUSB_MASK 0x1C
384#define PM8921_CHG_IUSB_MAX 7
385#define PM8921_CHG_IUSB_MIN 0
386static int pm_chg_iusbmax_set(struct pm8921_chg_chip *chip, int chg_current)
387{
388 u8 temp;
389
390 if (chg_current < PM8921_CHG_IUSB_MIN
391 || chg_current > PM8921_CHG_IUSB_MAX) {
392 pr_err("bad mA=%d asked to set\n", chg_current);
393 return -EINVAL;
394 }
395 temp = chg_current << 2;
396 return pm_chg_masked_write(chip, PBL_ACCESS2, PM8921_CHG_IUSB_MASK,
397 temp);
398}
399
400#define PM8921_CHG_WD_MASK 0x1F
401static int pm_chg_disable_wd(struct pm8921_chg_chip *chip)
402{
403 /* writing 0 to the wd timer disables it */
404 return pm_chg_masked_write(chip, CHG_TWDOG, PM8921_CHG_WD_MASK,
405 0);
406}
407
408static void pm8921_chg_enable_irq(struct pm8921_chg_chip *chip, int interrupt)
409{
410 if (!__test_and_set_bit(interrupt, chip->enabled_irqs)) {
411 dev_dbg(chip->dev, "%d\n", chip->pmic_chg_irq[interrupt]);
412 enable_irq(chip->pmic_chg_irq[interrupt]);
413 }
414}
415
416static void pm8921_chg_disable_irq(struct pm8921_chg_chip *chip, int interrupt)
417{
418 if (__test_and_clear_bit(interrupt, chip->enabled_irqs)) {
419 dev_dbg(chip->dev, "%d\n", chip->pmic_chg_irq[interrupt]);
420 disable_irq_nosync(chip->pmic_chg_irq[interrupt]);
421 }
422}
423
424static int pm_chg_get_rt_status(struct pm8921_chg_chip *chip, int irq_id)
425{
426 return pm8xxx_read_irq_stat(chip->dev->parent,
427 chip->pmic_chg_irq[irq_id]);
428}
429
430/* Treat OverVoltage/UnderVoltage as source missing */
431static int is_usb_chg_plugged_in(struct pm8921_chg_chip *chip)
432{
433 int pres, ov, uv;
434
435 pres = pm_chg_get_rt_status(chip, USBIN_VALID_IRQ);
436 ov = pm_chg_get_rt_status(chip, USBIN_OV_IRQ);
437 uv = pm_chg_get_rt_status(chip, USBIN_UV_IRQ);
438
439 return pres && !ov && !uv;
440}
441
442/* Treat OverVoltage/UnderVoltage as source missing */
443static int is_dc_chg_plugged_in(struct pm8921_chg_chip *chip)
444{
445 int pres, ov, uv;
446
447 pres = pm_chg_get_rt_status(chip, DCIN_VALID_IRQ);
448 ov = pm_chg_get_rt_status(chip, DCIN_OV_IRQ);
449 uv = pm_chg_get_rt_status(chip, DCIN_UV_IRQ);
450
451 return pres && !ov && !uv;
452}
453
454static int is_battery_charging(int fsm_state)
455{
456 switch (fsm_state) {
457 case FSM_STATE_ATC_2A:
458 case FSM_STATE_ATC_2B:
459 case FSM_STATE_ON_CHG_AND_BAT_6:
460 case FSM_STATE_FAST_CHG_7:
461 case FSM_STATE_TRKL_CHG_8:
462 return 1;
463 }
464 return 0;
465}
466
467static void bms_notify(struct work_struct *work)
468{
469 struct bms_notify *n = container_of(work, struct bms_notify, work);
470
471 if (n->is_charging)
472 pm8921_bms_charging_began();
473 else
474 pm8921_bms_charging_end();
475}
476
477static enum power_supply_property pm_power_props[] = {
478 POWER_SUPPLY_PROP_PRESENT,
479};
480
481static char *pm_power_supplied_to[] = {
482 "battery",
483};
484
485static int pm_power_get_property(struct power_supply *psy,
486 enum power_supply_property psp,
487 union power_supply_propval *val)
488{
489 struct pm8921_chg_chip *chip;
490
491 switch (psp) {
492 case POWER_SUPPLY_PROP_PRESENT:
493 if (psy->type == POWER_SUPPLY_TYPE_MAINS) {
494 chip = container_of(psy, struct pm8921_chg_chip,
495 dc_psy);
496 val->intval = is_dc_chg_plugged_in(chip);
497 }
498 if (psy->type == POWER_SUPPLY_TYPE_USB) {
499 chip = container_of(psy, struct pm8921_chg_chip,
500 usb_psy);
501 val->intval = is_usb_chg_plugged_in(chip);
502 }
503 break;
504 default:
505 return -EINVAL;
506 }
507 return 0;
508}
509
510static enum power_supply_property msm_batt_power_props[] = {
511 POWER_SUPPLY_PROP_STATUS,
512 POWER_SUPPLY_PROP_CHARGE_TYPE,
513 POWER_SUPPLY_PROP_HEALTH,
514 POWER_SUPPLY_PROP_PRESENT,
515 POWER_SUPPLY_PROP_TECHNOLOGY,
516 POWER_SUPPLY_PROP_VOLTAGE_MAX_DESIGN,
517 POWER_SUPPLY_PROP_VOLTAGE_MIN_DESIGN,
518 POWER_SUPPLY_PROP_VOLTAGE_NOW,
519 POWER_SUPPLY_PROP_CAPACITY,
520};
521
522static int get_prop_battery_mvolts(struct pm8921_chg_chip *chip)
523{
524 int rc;
525 struct pm8921_adc_chan_result result;
526
527 rc = pm8921_adc_read(chip->vbat_channel, &result);
528 if (rc) {
529 pr_err("error reading adc channel = %d, rc = %d\n",
530 chip->vbat_channel, rc);
531 return rc;
532 }
533 pr_debug("mvolts phy = %lld meas = 0x%llx", result.physical,
534 result.measurement);
535 return (int)result.physical;
536}
537
538static int get_prop_batt_capacity(struct pm8921_chg_chip *chip)
539{
540 return pm8921_bms_get_percent_charge();
541}
542
543static int get_prop_batt_health(struct pm8921_chg_chip *chip)
544{
545 int temp;
546
547 temp = pm_chg_get_rt_status(chip, BATTTEMP_HOT_IRQ);
548 if (temp)
549 return POWER_SUPPLY_HEALTH_OVERHEAT;
550
551 temp = pm_chg_get_rt_status(chip, BATTTEMP_COLD_IRQ);
552 if (temp)
553 return POWER_SUPPLY_HEALTH_COLD;
554
555 return POWER_SUPPLY_HEALTH_GOOD;
556}
557
558static int get_prop_batt_present(struct pm8921_chg_chip *chip)
559{
560 return pm_chg_get_rt_status(chip, BATT_INSERTED_IRQ);
561}
562
563static int get_prop_charge_type(struct pm8921_chg_chip *chip)
564{
565 int temp;
566
567 temp = pm_chg_get_rt_status(chip, TRKLCHG_IRQ);
568 if (temp)
569 return POWER_SUPPLY_CHARGE_TYPE_TRICKLE;
570
571 temp = pm_chg_get_rt_status(chip, FASTCHG_IRQ);
572 if (temp)
573 return POWER_SUPPLY_CHARGE_TYPE_FAST;
574
575 return POWER_SUPPLY_CHARGE_TYPE_NONE;
576}
577
578static int get_prop_batt_status(struct pm8921_chg_chip *chip)
579{
580 int temp = 0;
581
582 /* TODO reading the FSM state is more reliable */
583 temp = pm_chg_get_rt_status(chip, TRKLCHG_IRQ);
584
585 temp |= pm_chg_get_rt_status(chip, FASTCHG_IRQ);
586 if (temp)
587 return POWER_SUPPLY_STATUS_CHARGING;
588 /*
589 * The battery is not charging
590 * check the FET - if on battery is discharging
591 * - if off battery is isolated(full) and the system
592 * is being driven from a charger
593 */
594 temp = pm_chg_get_rt_status(chip, BATFET_IRQ);
595 if (temp)
596 return POWER_SUPPLY_STATUS_DISCHARGING;
597
598 return POWER_SUPPLY_STATUS_FULL;
599}
600
601static int pm_batt_power_get_property(struct power_supply *psy,
602 enum power_supply_property psp,
603 union power_supply_propval *val)
604{
605 struct pm8921_chg_chip *chip = container_of(psy, struct pm8921_chg_chip,
606 batt_psy);
607
608 switch (psp) {
609 case POWER_SUPPLY_PROP_STATUS:
610 val->intval = get_prop_batt_status(chip);
611 break;
612 case POWER_SUPPLY_PROP_CHARGE_TYPE:
613 val->intval = get_prop_charge_type(chip);
614 break;
615 case POWER_SUPPLY_PROP_HEALTH:
616 val->intval = get_prop_batt_health(chip);
617 break;
618 case POWER_SUPPLY_PROP_PRESENT:
619 val->intval = get_prop_batt_present(chip);
620 break;
621 case POWER_SUPPLY_PROP_TECHNOLOGY:
622 val->intval = POWER_SUPPLY_TECHNOLOGY_LION;
623 break;
624 case POWER_SUPPLY_PROP_VOLTAGE_MAX_DESIGN:
625 val->intval = chip->max_voltage;
626 break;
627 case POWER_SUPPLY_PROP_VOLTAGE_MIN_DESIGN:
628 val->intval = chip->min_voltage;
629 break;
630 case POWER_SUPPLY_PROP_VOLTAGE_NOW:
631 val->intval = get_prop_battery_mvolts(chip);
632 break;
633 case POWER_SUPPLY_PROP_CAPACITY:
634 val->intval = get_prop_batt_capacity(chip);
635 break;
636 default:
637 return -EINVAL;
638 }
639
640 return 0;
641}
642
643static void (*notify_vbus_state_func_ptr)(int);
644static int usb_chg_current;
645static DEFINE_SPINLOCK(vbus_lock);
646
647int pm8921_charger_register_vbus_sn(void (*callback)(int))
648{
649 pr_debug("%p\n", callback);
650 notify_vbus_state_func_ptr = callback;
651 return 0;
652}
653EXPORT_SYMBOL_GPL(pm8921_charger_register_vbus_sn);
654
655/* this is passed to the hsusb via platform_data msm_otg_pdata */
656void pm8921_charger_unregister_vbus_sn(void (*callback)(int))
657{
658 pr_debug("%p\n", callback);
659 notify_vbus_state_func_ptr = NULL;
660}
661EXPORT_SYMBOL_GPL(pm8921_charger_unregister_vbus_sn);
662
663static void notify_usb_of_the_plugin_event(int plugin)
664{
665 plugin = !!plugin;
666 if (notify_vbus_state_func_ptr) {
667 pr_debug("notifying plugin\n");
668 (*notify_vbus_state_func_ptr) (plugin);
669 } else {
670 pr_debug("unable to notify plugin\n");
671 }
672}
673
674struct usb_ma_limit_entry {
675 int usb_ma;
676 u8 chg_iusb_value;
677};
678
679static struct usb_ma_limit_entry usb_ma_table[] = {
680 {100, 0},
681 {500, 1},
682 {700, 2},
683 {850, 3},
684 {900, 4},
685 {1100, 5},
686 {1300, 6},
687 {1500, 7},
688};
689
690/* assumes vbus_lock is held */
691static void __pm8921_charger_vbus_draw(unsigned int mA)
692{
693 int i, rc;
694
695 if (mA > 0 && mA <= 2) {
696 usb_chg_current = 0;
697 rc = pm_chg_iusbmax_set(the_chip,
698 usb_ma_table[0].chg_iusb_value);
699 if (rc) {
700 pr_err("unable to set iusb to %d rc = %d\n",
701 usb_ma_table[0].chg_iusb_value, rc);
702 }
703 rc = pm_chg_usb_suspend_enable(the_chip, 1);
704 if (rc)
705 pr_err("fail to set suspend bit rc=%d\n", rc);
706 } else {
707 rc = pm_chg_usb_suspend_enable(the_chip, 0);
708 if (rc)
709 pr_err("fail to reset suspend bit rc=%d\n", rc);
710 for (i = ARRAY_SIZE(usb_ma_table) - 1; i >= 0; i--) {
711 if (usb_ma_table[i].usb_ma <= mA)
712 break;
713 }
714 if (i < 0)
715 i = 0;
716 rc = pm_chg_iusbmax_set(the_chip,
717 usb_ma_table[i].chg_iusb_value);
718 if (rc) {
719 pr_err("unable to set iusb to %d rc = %d\n",
720 usb_ma_table[i].chg_iusb_value, rc);
721 }
722 }
723}
724
725/* USB calls these to tell us how much max usb current the system can draw */
726void pm8921_charger_vbus_draw(unsigned int mA)
727{
728 unsigned long flags;
729
730 pr_debug("Enter charge=%d\n", mA);
731 spin_lock_irqsave(&vbus_lock, flags);
732 if (the_chip) {
733 __pm8921_charger_vbus_draw(mA);
734 } else {
735 /*
736 * called before pmic initialized,
737 * save this value and use it at probe
738 */
739 usb_chg_current = mA;
740 }
741 spin_unlock_irqrestore(&vbus_lock, flags);
742}
743EXPORT_SYMBOL_GPL(pm8921_charger_vbus_draw);
744
745static void handle_usb_insertion_removal(struct pm8921_chg_chip *chip)
746{
747 int usb_present;
748
749 usb_present = is_usb_chg_plugged_in(chip);
750 if (chip->usb_present ^ usb_present) {
751 notify_usb_of_the_plugin_event(usb_present);
752 chip->usb_present = usb_present;
753 power_supply_changed(&chip->usb_psy);
754 }
755}
756
757static void handle_dc_removal_insertion(struct pm8921_chg_chip *chip)
758{
759 int dc_present;
760
761 dc_present = is_dc_chg_plugged_in(chip);
762 if (chip->dc_present ^ dc_present) {
763 chip->dc_present = dc_present;
764 power_supply_changed(&chip->dc_psy);
765 }
766}
767
768static irqreturn_t usbin_valid_irq_handler(int irq, void *data)
769{
770 handle_usb_insertion_removal(data);
771 return IRQ_HANDLED;
772}
773
774static irqreturn_t usbin_ov_irq_handler(int irq, void *data)
775{
776 handle_usb_insertion_removal(data);
777 return IRQ_HANDLED;
778}
779
780static irqreturn_t batt_inserted_irq_handler(int irq, void *data)
781{
782 struct pm8921_chg_chip *chip = data;
783 int status;
784
785 status = pm_chg_get_rt_status(chip,
786 BATT_INSERTED_IRQ);
787 pr_debug("battery present=%d", status);
788 power_supply_changed(&chip->batt_psy);
789 return IRQ_HANDLED;
790}
791/* this interrupt used to restart charging a battery */
792static irqreturn_t vbatdet_low_irq_handler(int irq, void *data)
793{
794 struct pm8921_chg_chip *chip = data;
795
796 pr_debug("fsm_state=%d\n", pm_chg_get_fsm_state(data));
797 power_supply_changed(&chip->batt_psy);
798 power_supply_changed(&chip->usb_psy);
799 power_supply_changed(&chip->dc_psy);
800 return IRQ_HANDLED;
801}
802
803static irqreturn_t usbin_uv_irq_handler(int irq, void *data)
804{
805 handle_usb_insertion_removal(data);
806 return IRQ_HANDLED;
807}
808
809static irqreturn_t vbat_ov_irq_handler(int irq, void *data)
810{
811 pr_debug("fsm_state=%d\n", pm_chg_get_fsm_state(data));
812 return IRQ_HANDLED;
813}
814
815static irqreturn_t chgwdog_irq_handler(int irq, void *data)
816{
817 pr_debug("fsm_state=%d\n", pm_chg_get_fsm_state(data));
818 return IRQ_HANDLED;
819}
820
821static irqreturn_t vcp_irq_handler(int irq, void *data)
822{
823 pr_warning("VCP triggered BATDET forced on\n");
824 pr_debug("state_changed_to=%d\n", pm_chg_get_fsm_state(data));
825 return IRQ_HANDLED;
826}
827
828static irqreturn_t atcdone_irq_handler(int irq, void *data)
829{
830 pr_debug("fsm_state=%d\n", pm_chg_get_fsm_state(data));
831 return IRQ_HANDLED;
832}
833
834static irqreturn_t atcfail_irq_handler(int irq, void *data)
835{
836 pr_debug("fsm_state=%d\n", pm_chg_get_fsm_state(data));
837 return IRQ_HANDLED;
838}
839
840static irqreturn_t chgdone_irq_handler(int irq, void *data)
841{
842 struct pm8921_chg_chip *chip = data;
843
844 pr_debug("state_changed_to=%d\n", pm_chg_get_fsm_state(data));
845 power_supply_changed(&chip->batt_psy);
846 power_supply_changed(&chip->usb_psy);
847 power_supply_changed(&chip->dc_psy);
848 return IRQ_HANDLED;
849}
850
851static irqreturn_t chgfail_irq_handler(int irq, void *data)
852{
853 struct pm8921_chg_chip *chip = data;
854
855 pr_debug("state_changed_to=%d\n", pm_chg_get_fsm_state(data));
856 power_supply_changed(&chip->batt_psy);
857 power_supply_changed(&chip->usb_psy);
858 power_supply_changed(&chip->dc_psy);
859 return IRQ_HANDLED;
860}
861
862static irqreturn_t chgstate_irq_handler(int irq, void *data)
863{
864 struct pm8921_chg_chip *chip = data;
865 int new_is_charging = 0, fsm_state;
866
867 pr_debug("state_changed_to=%d\n", pm_chg_get_fsm_state(data));
868 power_supply_changed(&chip->batt_psy);
869 power_supply_changed(&chip->usb_psy);
870 power_supply_changed(&chip->dc_psy);
871
872 fsm_state = pm_chg_get_fsm_state(chip);
873 new_is_charging = is_battery_charging(fsm_state);
874
875 if (chip->bms_notify.is_charging ^ new_is_charging) {
876 chip->bms_notify.is_charging = new_is_charging;
877 schedule_work(&(chip->bms_notify.work));
878 }
879 return IRQ_HANDLED;
880}
881
882static irqreturn_t loop_change_irq_handler(int irq, void *data)
883{
884 pr_debug("fsm_state=%d\n", pm_chg_get_fsm_state(data));
885 return IRQ_HANDLED;
886}
887
888static irqreturn_t fastchg_irq_handler(int irq, void *data)
889{
890 struct pm8921_chg_chip *chip = data;
891
892 power_supply_changed(&chip->batt_psy);
893 return IRQ_HANDLED;
894}
895
896static irqreturn_t trklchg_irq_handler(int irq, void *data)
897{
898 struct pm8921_chg_chip *chip = data;
899
900 power_supply_changed(&chip->batt_psy);
901 return IRQ_HANDLED;
902}
903
904static irqreturn_t batt_removed_irq_handler(int irq, void *data)
905{
906 struct pm8921_chg_chip *chip = data;
907 int status;
908
909 status = pm_chg_get_rt_status(chip, BATT_REMOVED_IRQ);
910 pr_debug("battery present=%d state=%d", !status,
911 pm_chg_get_fsm_state(data));
912 power_supply_changed(&chip->batt_psy);
913 return IRQ_HANDLED;
914}
915
916static irqreturn_t batttemp_hot_irq_handler(int irq, void *data)
917{
918 struct pm8921_chg_chip *chip = data;
919
920 power_supply_changed(&chip->batt_psy);
921 return IRQ_HANDLED;
922}
923
924static irqreturn_t chghot_irq_handler(int irq, void *data)
925{
926 struct pm8921_chg_chip *chip = data;
927
928 pr_debug("Chg hot fsm_state=%d\n", pm_chg_get_fsm_state(data));
929 power_supply_changed(&chip->batt_psy);
930 power_supply_changed(&chip->usb_psy);
931 power_supply_changed(&chip->dc_psy);
932 return IRQ_HANDLED;
933}
934
935static irqreturn_t batttemp_cold_irq_handler(int irq, void *data)
936{
937 struct pm8921_chg_chip *chip = data;
938
939 pr_debug("Batt cold fsm_state=%d\n", pm_chg_get_fsm_state(data));
940 power_supply_changed(&chip->batt_psy);
941 power_supply_changed(&chip->usb_psy);
942 power_supply_changed(&chip->dc_psy);
943 return IRQ_HANDLED;
944}
945
946static irqreturn_t chg_gone_irq_handler(int irq, void *data)
947{
948 struct pm8921_chg_chip *chip = data;
949
950 pr_debug("Chg gone fsm_state=%d\n", pm_chg_get_fsm_state(data));
951 power_supply_changed(&chip->batt_psy);
952 power_supply_changed(&chip->usb_psy);
953 power_supply_changed(&chip->dc_psy);
954 return IRQ_HANDLED;
955}
956
957static irqreturn_t bat_temp_ok_irq_handler(int irq, void *data)
958{
959 struct pm8921_chg_chip *chip = data;
960
961 pr_debug("batt temp ok fsm_state=%d\n", pm_chg_get_fsm_state(data));
962 power_supply_changed(&chip->batt_psy);
963 power_supply_changed(&chip->usb_psy);
964 power_supply_changed(&chip->dc_psy);
965 return IRQ_HANDLED;
966}
967
968static irqreturn_t coarse_det_low_irq_handler(int irq, void *data)
969{
970 pr_debug("fsm_state=%d\n", pm_chg_get_fsm_state(data));
971 return IRQ_HANDLED;
972}
973
974static irqreturn_t vdd_loop_irq_handler(int irq, void *data)
975{
976 pr_debug("fsm_state=%d\n", pm_chg_get_fsm_state(data));
977 return IRQ_HANDLED;
978}
979
980static irqreturn_t vreg_ov_irq_handler(int irq, void *data)
981{
982 pr_debug("fsm_state=%d\n", pm_chg_get_fsm_state(data));
983 return IRQ_HANDLED;
984}
985
986static irqreturn_t vbatdet_irq_handler(int irq, void *data)
987{
988 pr_debug("fsm_state=%d\n", pm_chg_get_fsm_state(data));
989 return IRQ_HANDLED;
990}
991
992static irqreturn_t batfet_irq_handler(int irq, void *data)
993{
994 struct pm8921_chg_chip *chip = data;
995
996 pr_debug("vreg ov\n");
997 power_supply_changed(&chip->batt_psy);
998 return IRQ_HANDLED;
999}
1000
1001static irqreturn_t dcin_valid_irq_handler(int irq, void *data)
1002{
1003 handle_dc_removal_insertion(data);
1004 return IRQ_HANDLED;
1005}
1006
1007static irqreturn_t dcin_ov_irq_handler(int irq, void *data)
1008{
1009 handle_dc_removal_insertion(data);
1010 return IRQ_HANDLED;
1011}
1012
1013static irqreturn_t dcin_uv_irq_handler(int irq, void *data)
1014{
1015 handle_dc_removal_insertion(data);
1016 return IRQ_HANDLED;
1017}
1018
1019static int set_disable_status_param(const char *val, struct kernel_param *kp)
1020{
1021 int ret;
1022 struct pm8921_chg_chip *chip = the_chip;
1023
1024 ret = param_set_int(val, kp);
1025 if (ret) {
1026 pr_err("error setting value %d\n", ret);
1027 return ret;
1028 }
1029 pr_info("factory set disable param to %d\n", charging_disabled);
1030 if (chip) {
1031 pm_chg_auto_enable(chip, !charging_disabled);
1032 pm_chg_charge_dis(chip, charging_disabled);
1033 }
1034 return 0;
1035}
1036module_param_call(disabled, set_disable_status_param, param_get_uint,
1037 &charging_disabled, 0644);
1038
1039static void free_irqs(struct pm8921_chg_chip *chip)
1040{
1041 int i;
1042
1043 for (i = 0; i < PM_CHG_MAX_INTS; i++)
1044 if (chip->pmic_chg_irq[i]) {
1045 free_irq(chip->pmic_chg_irq[i], chip);
1046 chip->pmic_chg_irq[i] = 0;
1047 }
1048}
1049
1050/* determines the initial present states and notifies msm_charger */
1051static void __devinit determine_initial_state(struct pm8921_chg_chip *chip)
1052{
1053 unsigned long flags;
1054 int fsm_state;
1055
1056 chip->dc_present = !!is_dc_chg_plugged_in(chip);
1057 chip->usb_present = !!is_usb_chg_plugged_in(chip);
1058
1059 notify_usb_of_the_plugin_event(chip->usb_present);
1060
1061 pm8921_chg_enable_irq(chip, DCIN_VALID_IRQ);
1062 pm8921_chg_enable_irq(chip, USBIN_VALID_IRQ);
1063 pm8921_chg_enable_irq(chip, BATT_REMOVED_IRQ);
1064 pm8921_chg_enable_irq(chip, BATT_REMOVED_IRQ);
1065 pm8921_chg_enable_irq(chip, CHGSTATE_IRQ);
1066
1067 spin_lock_irqsave(&vbus_lock, flags);
1068 if (usb_chg_current) {
1069 /* reissue a vbus draw call */
1070 __pm8921_charger_vbus_draw(usb_chg_current);
1071 }
1072 spin_unlock_irqrestore(&vbus_lock, flags);
1073
1074 fsm_state = pm_chg_get_fsm_state(chip);
1075 if (is_battery_charging(fsm_state)) {
1076 chip->bms_notify.is_charging = 1;
1077 pm8921_bms_charging_began();
1078 }
1079
1080 pr_debug("usb = %d, dc = %d batt = %d state=%d\n",
1081 chip->usb_present,
1082 chip->dc_present,
1083 get_prop_batt_present(chip),
1084 fsm_state);
1085}
1086
1087struct pm_chg_irq_init_data {
1088 unsigned int irq_id;
1089 char *name;
1090 unsigned long flags;
1091 irqreturn_t (*handler)(int, void *);
1092};
1093
1094#define CHG_IRQ(_id, _flags, _handler) \
1095{ \
1096 .irq_id = _id, \
1097 .name = #_id, \
1098 .flags = _flags, \
1099 .handler = _handler, \
1100}
1101struct pm_chg_irq_init_data chg_irq_data[] = {
1102 CHG_IRQ(USBIN_VALID_IRQ, IRQF_TRIGGER_RISING | IRQF_TRIGGER_FALLING,
1103 usbin_valid_irq_handler),
1104 CHG_IRQ(USBIN_OV_IRQ, IRQF_TRIGGER_RISING | IRQF_TRIGGER_FALLING,
1105 usbin_ov_irq_handler),
1106 CHG_IRQ(BATT_INSERTED_IRQ, IRQF_TRIGGER_RISING | IRQF_TRIGGER_FALLING,
1107 batt_inserted_irq_handler),
1108 CHG_IRQ(VBATDET_LOW_IRQ, IRQF_TRIGGER_RISING, vbatdet_low_irq_handler),
1109 CHG_IRQ(USBIN_UV_IRQ, IRQF_TRIGGER_RISING | IRQF_TRIGGER_FALLING,
1110 usbin_uv_irq_handler),
1111 CHG_IRQ(VBAT_OV_IRQ, IRQF_TRIGGER_RISING, vbat_ov_irq_handler),
1112 CHG_IRQ(CHGWDOG_IRQ, IRQF_TRIGGER_RISING, chgwdog_irq_handler),
1113 CHG_IRQ(VCP_IRQ, IRQF_TRIGGER_RISING, vcp_irq_handler),
1114 CHG_IRQ(ATCDONE_IRQ, IRQF_TRIGGER_RISING, atcdone_irq_handler),
1115 CHG_IRQ(ATCFAIL_IRQ, IRQF_TRIGGER_RISING, atcfail_irq_handler),
1116 CHG_IRQ(CHGDONE_IRQ, IRQF_TRIGGER_RISING, chgdone_irq_handler),
1117 CHG_IRQ(CHGFAIL_IRQ, IRQF_TRIGGER_RISING, chgfail_irq_handler),
1118 CHG_IRQ(CHGSTATE_IRQ, IRQF_TRIGGER_RISING, chgstate_irq_handler),
1119 CHG_IRQ(LOOP_CHANGE_IRQ, IRQF_TRIGGER_RISING, loop_change_irq_handler),
1120 CHG_IRQ(FASTCHG_IRQ, IRQF_TRIGGER_RISING, fastchg_irq_handler),
1121 CHG_IRQ(TRKLCHG_IRQ, IRQF_TRIGGER_RISING, trklchg_irq_handler),
1122 CHG_IRQ(BATT_REMOVED_IRQ, IRQF_TRIGGER_RISING,
1123 batt_removed_irq_handler),
1124 CHG_IRQ(BATTTEMP_HOT_IRQ, IRQF_TRIGGER_RISING,
1125 batttemp_hot_irq_handler),
1126 CHG_IRQ(CHGHOT_IRQ, IRQF_TRIGGER_RISING, chghot_irq_handler),
1127 CHG_IRQ(BATTTEMP_COLD_IRQ, IRQF_TRIGGER_RISING,
1128 batttemp_cold_irq_handler),
1129 CHG_IRQ(CHG_GONE_IRQ, IRQF_TRIGGER_RISING, chg_gone_irq_handler),
1130 CHG_IRQ(BAT_TEMP_OK_IRQ, IRQF_TRIGGER_RISING, bat_temp_ok_irq_handler),
1131 CHG_IRQ(COARSE_DET_LOW_IRQ, IRQF_TRIGGER_RISING,
1132 coarse_det_low_irq_handler),
1133 CHG_IRQ(VDD_LOOP_IRQ, IRQF_TRIGGER_RISING, vdd_loop_irq_handler),
1134 CHG_IRQ(VREG_OV_IRQ, IRQF_TRIGGER_RISING, vreg_ov_irq_handler),
1135 CHG_IRQ(VBATDET_IRQ, IRQF_TRIGGER_RISING, vbatdet_irq_handler),
1136 CHG_IRQ(BATFET_IRQ, IRQF_TRIGGER_RISING | IRQF_TRIGGER_FALLING,
1137 batfet_irq_handler),
1138 CHG_IRQ(DCIN_VALID_IRQ, IRQF_TRIGGER_RISING | IRQF_TRIGGER_FALLING,
1139 dcin_valid_irq_handler),
1140 CHG_IRQ(DCIN_OV_IRQ, IRQF_TRIGGER_RISING | IRQF_TRIGGER_FALLING,
1141 dcin_ov_irq_handler),
1142 CHG_IRQ(DCIN_UV_IRQ, IRQF_TRIGGER_RISING | IRQF_TRIGGER_FALLING,
1143 dcin_uv_irq_handler),
1144};
1145
1146static int __devinit request_irqs(struct pm8921_chg_chip *chip,
1147 struct platform_device *pdev)
1148{
1149 struct resource *res;
1150 int ret, i;
1151
1152 ret = 0;
1153 bitmap_fill(chip->enabled_irqs, PM_CHG_MAX_INTS);
1154
1155 for (i = 0; i < ARRAY_SIZE(chg_irq_data); i++) {
1156 res = platform_get_resource_byname(pdev, IORESOURCE_IRQ,
1157 chg_irq_data[i].name);
1158 if (res == NULL) {
1159 pr_err("couldn't find %s\n", chg_irq_data[i].name);
1160 goto err_out;
1161 }
1162 ret = request_irq(res->start, chg_irq_data[i].handler,
1163 chg_irq_data[i].flags,
1164 chg_irq_data[i].name, chip);
1165 if (ret < 0) {
1166 pr_err("couldn't request %d (%s) %d\n", res->start,
1167 chg_irq_data[i].name, ret);
1168 goto err_out;
1169 }
1170 chip->pmic_chg_irq[chg_irq_data[i].irq_id] = res->start;
1171 pm8921_chg_disable_irq(chip, chg_irq_data[i].irq_id);
1172 }
1173 return 0;
1174
1175err_out:
1176 free_irqs(chip);
1177 return -EINVAL;
1178}
1179
1180#define ENUM_TIMER_STOP_BIT BIT(1)
1181#define BOOT_DONE_BIT BIT(6)
1182#define CHG_BATFET_ON_BIT BIT(3)
1183#define CHG_VCP_EN BIT(0)
1184#define CHG_BAT_TEMP_DIS_BIT BIT(2)
1185#define SAFE_CURRENT_MA 1500
1186static int __devinit pm8921_chg_hw_init(struct pm8921_chg_chip *chip)
1187{
1188 int rc;
1189
1190 rc = pm_chg_masked_write(chip, SYS_CONFIG_2,
1191 BOOT_DONE_BIT, BOOT_DONE_BIT);
1192 if (rc) {
1193 pr_err("Failed to set BOOT_DONE_BIT rc=%d\n", rc);
1194 return rc;
1195 }
1196
1197 rc = pm_chg_vddsafe_set(chip, chip->max_voltage);
1198 if (rc) {
1199 pr_err("Failed to set safe voltage to %d rc=%d\n",
1200 chip->max_voltage, rc);
1201 return rc;
1202 }
1203 rc = pm_chg_vbatdet_set(chip, chip->resume_voltage);
1204 if (rc) {
1205 pr_err("Failed to set vbatdet comprator voltage to %d rc=%d\n",
1206 chip->resume_voltage, rc);
1207 return rc;
1208 }
1209
1210 rc = pm_chg_vddmax_set(chip, chip->max_voltage);
1211 if (rc) {
1212 pr_err("Failed to set max voltage to %d rc=%d\n",
1213 chip->max_voltage, rc);
1214 return rc;
1215 }
1216 rc = pm_chg_ibatsafe_set(chip, SAFE_CURRENT_MA);
1217 if (rc) {
1218 pr_err("Failed to set max voltage to %d rc=%d\n",
1219 SAFE_CURRENT_MA, rc);
1220 return rc;
1221 }
1222
1223 /* TODO needs to be changed as per the temeperature of the battery */
1224 rc = pm_chg_ibatmax_set(chip, 400);
1225 if (rc) {
1226 pr_err("Failed to set max current to 400 rc=%d\n", rc);
1227 return rc;
1228 }
1229
1230 rc = pm_chg_iterm_set(chip, chip->term_current);
1231 if (rc) {
1232 pr_err("Failed to set term current to %d rc=%d\n",
1233 chip->term_current, rc);
1234 return rc;
1235 }
1236
1237 /* Disable the ENUM TIMER */
1238 rc = pm_chg_masked_write(chip, PBL_ACCESS2, ENUM_TIMER_STOP_BIT,
1239 ENUM_TIMER_STOP_BIT);
1240 if (rc) {
1241 pr_err("Failed to set enum timer stop rc=%d\n", rc);
1242 return rc;
1243 }
1244
1245 /* init with the lowest USB current */
1246 rc = pm_chg_iusbmax_set(chip, usb_ma_table[0].chg_iusb_value);
1247 if (rc) {
1248 pr_err("Failed to set usb max to %d rc=%d\n",
1249 usb_ma_table[0].chg_iusb_value, rc);
1250 return rc;
1251 }
1252 rc = pm_chg_disable_wd(chip);
1253 if (rc) {
1254 pr_err("Failed to disable wd rc=%d\n", rc);
1255 return rc;
1256 }
1257
1258 rc = pm_chg_masked_write(chip, CHG_CNTRL_2,
1259 CHG_BAT_TEMP_DIS_BIT, 0);
1260 if (rc) {
1261 pr_err("Failed to enable temp control chg rc=%d\n", rc);
1262 return rc;
1263 }
1264 /* switch to a 3.2Mhz for the buck */
1265 rc = pm8xxx_writeb(chip->dev->parent, CHG_BUCK_CLOCK_CTRL, 0x15);
1266 if (rc) {
1267 pr_err("Failed to switch buck clk rc=%d\n", rc);
1268 return rc;
1269 }
1270
1271 /* Workarounds for die 1.1 and 1.0 */
1272 if (pm8xxx_get_revision(chip->dev->parent) < PM8XXX_REVISION_8921_2p0) {
1273 pm8xxx_writeb(chip->dev->parent, CHG_BUCK_CTRL_TEST2, 0xF1);
1274 pm8xxx_writeb(chip->dev->parent, CHG_BUCK_CTRL_TEST3, 0x8C);
1275 pm8xxx_writeb(chip->dev->parent, CHG_BUCK_CTRL_TEST3, 0xCE);
1276 pm8xxx_writeb(chip->dev->parent, CHG_BUCK_CTRL_TEST3, 0xD8);
1277 }
1278
1279 rc = pm_chg_charge_dis(chip, charging_disabled);
1280 if (rc) {
1281 pr_err("Failed to disable CHG_CHARGE_DIS bit rc=%d\n", rc);
1282 return rc;
1283 }
1284
1285 rc = pm_chg_auto_enable(chip, !charging_disabled);
1286 if (rc) {
1287 pr_err("Failed to enable charging rc=%d\n", rc);
1288 return rc;
1289 }
1290
1291 return 0;
1292}
1293
1294static int get_rt_status(void *data, u64 * val)
1295{
1296 int i = (int)data;
1297 int ret;
1298
1299 /* global irq number is passed in via data */
1300 ret = pm_chg_get_rt_status(the_chip, i);
1301 *val = ret;
1302 return 0;
1303}
1304DEFINE_SIMPLE_ATTRIBUTE(rt_fops, get_rt_status, NULL, "%llu\n");
1305
1306static int get_fsm_status(void *data, u64 * val)
1307{
1308 u8 temp;
1309
1310 temp = pm_chg_get_fsm_state(the_chip);
1311 *val = temp;
1312 return 0;
1313}
1314DEFINE_SIMPLE_ATTRIBUTE(fsm_fops, get_fsm_status, NULL, "%llu\n");
1315
1316static int get_reg(void *data, u64 * val)
1317{
1318 int addr = (int)data;
1319 int ret;
1320 u8 temp;
1321
1322 ret = pm8xxx_readb(the_chip->dev->parent, addr, &temp);
1323 if (ret) {
1324 pr_err("pm8xxx_readb to %x value =%d errored = %d\n",
1325 addr, temp, ret);
1326 return -EAGAIN;
1327 }
1328 *val = temp;
1329 return 0;
1330}
1331
1332static int set_reg(void *data, u64 val)
1333{
1334 int addr = (int)data;
1335 int ret;
1336 u8 temp;
1337
1338 temp = (u8) val;
1339 ret = pm8xxx_writeb(the_chip->dev->parent, addr, temp);
1340 if (ret) {
1341 pr_err("pm8xxx_writeb to %x value =%d errored = %d\n",
1342 addr, temp, ret);
1343 return -EAGAIN;
1344 }
1345 return 0;
1346}
1347DEFINE_SIMPLE_ATTRIBUTE(reg_fops, get_reg, set_reg, "0x%02llx\n");
1348
1349static void create_debugfs_entries(struct pm8921_chg_chip *chip)
1350{
1351 int i;
1352
1353 chip->dent = debugfs_create_dir("pm8921_chg", NULL);
1354
1355 if (IS_ERR(chip->dent)) {
1356 pr_err("pmic charger couldnt create debugfs dir\n");
1357 return;
1358 }
1359
1360 debugfs_create_file("CHG_CNTRL", 0644, chip->dent,
1361 (void *)CHG_CNTRL, &reg_fops);
1362 debugfs_create_file("CHG_CNTRL_2", 0644, chip->dent,
1363 (void *)CHG_CNTRL_2, &reg_fops);
1364 debugfs_create_file("CHG_CNTRL_3", 0644, chip->dent,
1365 (void *)CHG_CNTRL_3, &reg_fops);
1366 debugfs_create_file("PBL_ACCESS1", 0644, chip->dent,
1367 (void *)PBL_ACCESS1, &reg_fops);
1368 debugfs_create_file("PBL_ACCESS2", 0644, chip->dent,
1369 (void *)PBL_ACCESS2, &reg_fops);
1370 debugfs_create_file("SYS_CONFIG_1", 0644, chip->dent,
1371 (void *)SYS_CONFIG_1, &reg_fops);
1372 debugfs_create_file("SYS_CONFIG_2", 0644, chip->dent,
1373 (void *)SYS_CONFIG_2, &reg_fops);
1374 debugfs_create_file("CHG_VDD_MAX", 0644, chip->dent,
1375 (void *)CHG_VDD_MAX, &reg_fops);
1376 debugfs_create_file("CHG_VDD_SAFE", 0644, chip->dent,
1377 (void *)CHG_VDD_SAFE, &reg_fops);
1378 debugfs_create_file("CHG_VBAT_DET", 0644, chip->dent,
1379 (void *)CHG_VBAT_DET, &reg_fops);
1380 debugfs_create_file("CHG_IBAT_MAX", 0644, chip->dent,
1381 (void *)CHG_IBAT_MAX, &reg_fops);
1382 debugfs_create_file("CHG_IBAT_SAFE", 0644, chip->dent,
1383 (void *)CHG_IBAT_SAFE, &reg_fops);
1384 debugfs_create_file("CHG_VIN_MIN", 0644, chip->dent,
1385 (void *)CHG_VIN_MIN, &reg_fops);
1386 debugfs_create_file("CHG_VTRICKLE", 0644, chip->dent,
1387 (void *)CHG_VTRICKLE, &reg_fops);
1388 debugfs_create_file("CHG_ITRICKLE", 0644, chip->dent,
1389 (void *)CHG_ITRICKLE, &reg_fops);
1390 debugfs_create_file("CHG_ITERM", 0644, chip->dent,
1391 (void *)CHG_ITERM, &reg_fops);
1392 debugfs_create_file("CHG_TCHG_MAX", 0644, chip->dent,
1393 (void *)CHG_TCHG_MAX, &reg_fops);
1394 debugfs_create_file("CHG_TWDOG", 0644, chip->dent,
1395 (void *)CHG_TWDOG, &reg_fops);
1396 debugfs_create_file("CHG_TEMP_THRESH", 0644, chip->dent,
1397 (void *)CHG_TEMP_THRESH, &reg_fops);
1398 debugfs_create_file("CHG_COMP_OVR", 0644, chip->dent,
1399 (void *)CHG_COMP_OVR, &reg_fops);
1400 debugfs_create_file("CHG_BUCK_CTRL_TEST1", 0644, chip->dent,
1401 (void *)CHG_BUCK_CTRL_TEST1, &reg_fops);
1402 debugfs_create_file("CHG_BUCK_CTRL_TEST2", 0644, chip->dent,
1403 (void *)CHG_BUCK_CTRL_TEST2, &reg_fops);
1404 debugfs_create_file("CHG_BUCK_CTRL_TEST3", 0644, chip->dent,
1405 (void *)CHG_BUCK_CTRL_TEST3, &reg_fops);
1406 debugfs_create_file("CHG_TEST", 0644, chip->dent,
1407 (void *)CHG_TEST, &reg_fops);
1408
1409 debugfs_create_file("FSM_STATE", 0644, chip->dent, NULL,
1410 &fsm_fops);
1411
1412 for (i = 0; i < ARRAY_SIZE(chg_irq_data); i++) {
1413 if (chip->pmic_chg_irq[chg_irq_data[i].irq_id])
1414 debugfs_create_file(chg_irq_data[i].name, 0444,
1415 chip->dent,
1416 (void *)chg_irq_data[i].irq_id,
1417 &rt_fops);
1418 }
1419}
1420
1421static int __devinit pm8921_charger_probe(struct platform_device *pdev)
1422{
1423 int rc = 0;
1424 struct pm8921_chg_chip *chip;
1425 const struct pm8921_charger_platform_data *pdata
1426 = pdev->dev.platform_data;
1427
1428 if (!pdata) {
1429 pr_err("missing platform data\n");
1430 return -EINVAL;
1431 }
1432
1433 chip = kzalloc(sizeof(struct pm8921_chg_chip),
1434 GFP_KERNEL);
1435 if (!chip) {
1436 pr_err("Cannot allocate pm_chg_chip\n");
1437 return -ENOMEM;
1438 }
1439
1440 chip->dev = &pdev->dev;
1441 chip->safety_time = pdata->safety_time;
1442 chip->update_time = pdata->update_time;
1443 chip->max_voltage = pdata->max_voltage;
1444 chip->min_voltage = pdata->min_voltage;
1445 chip->resume_voltage = pdata->resume_voltage;
1446 chip->term_current = pdata->term_current;
1447 chip->vbat_channel = pdata->charger_cdata.vbat_channel;
1448
1449 rc = pm8921_chg_hw_init(chip);
1450 if (rc) {
1451 pr_err("couldn't init hardware rc=%d\n", rc);
1452 goto free_chip;
1453 }
1454
1455 chip->usb_psy.name = "usb",
1456 chip->usb_psy.type = POWER_SUPPLY_TYPE_USB,
1457 chip->usb_psy.supplied_to = pm_power_supplied_to,
1458 chip->usb_psy.num_supplicants = ARRAY_SIZE(pm_power_supplied_to),
1459 chip->usb_psy.properties = pm_power_props,
1460 chip->usb_psy.num_properties = ARRAY_SIZE(pm_power_props),
1461 chip->usb_psy.get_property = pm_power_get_property,
1462
1463 chip->dc_psy.name = "ac",
1464 chip->dc_psy.type = POWER_SUPPLY_TYPE_MAINS,
1465 chip->dc_psy.supplied_to = pm_power_supplied_to,
1466 chip->dc_psy.num_supplicants = ARRAY_SIZE(pm_power_supplied_to),
1467 chip->dc_psy.properties = pm_power_props,
1468 chip->dc_psy.num_properties = ARRAY_SIZE(pm_power_props),
1469 chip->dc_psy.get_property = pm_power_get_property,
1470
1471 chip->batt_psy.name = "battery",
1472 chip->batt_psy.type = POWER_SUPPLY_TYPE_BATTERY,
1473 chip->batt_psy.properties = msm_batt_power_props,
1474 chip->batt_psy.num_properties = ARRAY_SIZE(msm_batt_power_props),
1475 chip->batt_psy.get_property = pm_batt_power_get_property,
1476
1477 rc = power_supply_register(chip->dev, &chip->usb_psy);
1478 if (rc < 0) {
1479 pr_err("power_supply_register usb failed rc = %d\n", rc);
1480 goto free_irq;
1481 }
1482
1483 rc = power_supply_register(chip->dev, &chip->dc_psy);
1484 if (rc < 0) {
1485 pr_err("power_supply_register dc failed rc = %d\n", rc);
1486 goto unregister_usb;
1487 }
1488
1489 rc = power_supply_register(chip->dev, &chip->batt_psy);
1490 if (rc < 0) {
1491 pr_err("power_supply_register batt failed rc = %d\n", rc);
1492 goto unregister_dc;
1493 }
1494
1495 rc = request_irqs(chip, pdev);
1496 if (rc) {
1497 pr_err("couldn't register interrupts rc=%d\n", rc);
1498 goto unregister_batt;
1499 }
1500
1501 platform_set_drvdata(pdev, chip);
1502 the_chip = chip;
1503 create_debugfs_entries(chip);
1504
1505 INIT_WORK(&chip->bms_notify.work, bms_notify);
1506 /* determine what state the charger is in */
1507 determine_initial_state(chip);
1508
1509 return 0;
1510
1511free_irq:
1512 free_irqs(chip);
1513unregister_batt:
1514 power_supply_unregister(&chip->batt_psy);
1515unregister_dc:
1516 power_supply_unregister(&chip->dc_psy);
1517unregister_usb:
1518 power_supply_unregister(&chip->usb_psy);
1519free_chip:
1520 kfree(chip);
1521 return rc;
1522}
1523
1524static int __devexit pm8921_charger_remove(struct platform_device *pdev)
1525{
1526 struct pm8921_chg_chip *chip = platform_get_drvdata(pdev);
1527
1528 free_irqs(chip);
1529 platform_set_drvdata(pdev, NULL);
1530 the_chip = NULL;
1531 kfree(chip);
1532 return 0;
1533}
1534
1535static struct platform_driver pm8921_charger_driver = {
1536 .probe = pm8921_charger_probe,
1537 .remove = __devexit_p(pm8921_charger_remove),
1538 .driver = {
1539 .name = PM8921_CHARGER_DEV_NAME,
1540 .owner = THIS_MODULE,
1541 },
1542};
1543
1544static int __init pm8921_charger_init(void)
1545{
1546 return platform_driver_register(&pm8921_charger_driver);
1547}
1548
1549static void __exit pm8921_charger_exit(void)
1550{
1551 platform_driver_unregister(&pm8921_charger_driver);
1552}
1553
1554late_initcall(pm8921_charger_init);
1555module_exit(pm8921_charger_exit);
1556
1557MODULE_LICENSE("GPL v2");
1558MODULE_DESCRIPTION("PMIC8921 charger/battery driver");
1559MODULE_VERSION("1.0");
1560MODULE_ALIAS("platform:" PM8921_CHARGER_DEV_NAME);