pm2301: Clean-up PM2301 interrupt management
Fix the way interrupts are handled within the PM2301 charging driver. Signed-off-by: Rajkumar Kasirajan <rajkumar.kasirajan@stericsson.com> Signed-off-by: Lee Jones <lee.jones@linaro.org> Reviewed-by: Olivier CLERGEAUD <olivier.clergeaud@stericsson.com> Reviewed-by: Marcus COOPER <marcus.xm.cooper@stericsson.com> Reviewed-by: Michel JAOUEN <michel.jaouen@stericsson.com> Tested-by: Michel JAOUEN <michel.jaouen@stericsson.com>
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@ -224,7 +224,7 @@ static int pm2xxx_charger_bat_disc_mngt(struct pm2xxx_charger *pm2, int val)
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{
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dev_dbg(pm2->dev, "battery disconnected\n");
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return (pm2xxx_charging_disable_mngt(pm2));
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return 0;
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}
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static int pm2xxx_charger_detection(struct pm2xxx_charger *pm2, u8 *val)
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@ -275,17 +275,17 @@ static int pm2xxx_charger_itv_pwr_unplug_mngt(struct pm2xxx_charger *pm2,
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return 0;
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}
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static int pm2_int_reg0(struct pm2xxx_charger *pm2)
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static int pm2_int_reg0(void *pm2_data, int val)
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{
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struct pm2xxx_charger *pm2 = pm2_data;
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int ret = 0;
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if (pm2->pm2_int[0] &
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(PM2XXX_INT1_ITVBATLOWR | PM2XXX_INT1_ITVBATLOWF)) {
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ret = pm2xxx_charger_vbat_lsig_mngt(pm2, pm2->pm2_int[0] &
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if (val & (PM2XXX_INT1_ITVBATLOWR | PM2XXX_INT1_ITVBATLOWF)) {
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ret = pm2xxx_charger_vbat_lsig_mngt(pm2, val &
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(PM2XXX_INT1_ITVBATLOWR | PM2XXX_INT1_ITVBATLOWF));
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}
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if (pm2->pm2_int[0] & PM2XXX_INT1_ITVBATDISCONNECT) {
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if (val & PM2XXX_INT1_ITVBATDISCONNECT) {
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ret = pm2xxx_charger_bat_disc_mngt(pm2,
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PM2XXX_INT1_ITVBATDISCONNECT);
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}
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@ -293,21 +293,21 @@ static int pm2_int_reg0(struct pm2xxx_charger *pm2)
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return ret;
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}
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static int pm2_int_reg1(struct pm2xxx_charger *pm2)
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static int pm2_int_reg1(void *pm2_data, int val)
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{
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struct pm2xxx_charger *pm2 = pm2_data;
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int ret = 0;
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if (pm2->pm2_int[1] &
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(PM2XXX_INT2_ITVPWR1PLUG | PM2XXX_INT2_ITVPWR2PLUG)) {
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if (val & (PM2XXX_INT2_ITVPWR1PLUG | PM2XXX_INT2_ITVPWR2PLUG)) {
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dev_dbg(pm2->dev , "Main charger plugged\n");
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ret = pm2xxx_charger_itv_pwr_plug_mngt(pm2, pm2->pm2_int[1] &
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ret = pm2xxx_charger_itv_pwr_plug_mngt(pm2, val &
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(PM2XXX_INT2_ITVPWR1PLUG | PM2XXX_INT2_ITVPWR2PLUG));
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}
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if (pm2->pm2_int[1] &
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if (val &
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(PM2XXX_INT2_ITVPWR1UNPLUG | PM2XXX_INT2_ITVPWR2UNPLUG)) {
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dev_dbg(pm2->dev , "Main charger unplugged\n");
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ret = pm2xxx_charger_itv_pwr_unplug_mngt(pm2, pm2->pm2_int[1] &
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ret = pm2xxx_charger_itv_pwr_unplug_mngt(pm2, val &
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(PM2XXX_INT2_ITVPWR1UNPLUG |
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PM2XXX_INT2_ITVPWR2UNPLUG));
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}
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@ -315,14 +315,15 @@ static int pm2_int_reg1(struct pm2xxx_charger *pm2)
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return ret;
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}
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static int pm2_int_reg2(struct pm2xxx_charger *pm2)
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static int pm2_int_reg2(void *pm2_data, int val)
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{
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struct pm2xxx_charger *pm2 = pm2_data;
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int ret = 0;
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if (pm2->pm2_int[2] & PM2XXX_INT3_ITAUTOTIMEOUTWD)
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ret = pm2xxx_charger_wd_exp_mngt(pm2, pm2->pm2_int[2]);
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if (val & PM2XXX_INT3_ITAUTOTIMEOUTWD)
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ret = pm2xxx_charger_wd_exp_mngt(pm2, val);
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if (pm2->pm2_int[2] & (PM2XXX_INT3_ITCHPRECHARGEWD |
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if (val & (PM2XXX_INT3_ITCHPRECHARGEWD |
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PM2XXX_INT3_ITCHCCWD | PM2XXX_INT3_ITCHCVWD)) {
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dev_dbg(pm2->dev,
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"Watchdog occured for precharge, CC and CV charge\n");
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@ -331,64 +332,65 @@ static int pm2_int_reg2(struct pm2xxx_charger *pm2)
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return ret;
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}
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static int pm2_int_reg3(struct pm2xxx_charger *pm2)
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static int pm2_int_reg3(void *pm2_data, int val)
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{
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struct pm2xxx_charger *pm2 = pm2_data;
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int ret = 0;
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if (pm2->pm2_int[3] & (PM2XXX_INT4_ITCHARGINGON)) {
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if (val & (PM2XXX_INT4_ITCHARGINGON)) {
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dev_dbg(pm2->dev ,
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"chargind operation has started\n");
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}
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if (pm2->pm2_int[3] & (PM2XXX_INT4_ITVRESUME)) {
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if (val & (PM2XXX_INT4_ITVRESUME)) {
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dev_dbg(pm2->dev,
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"battery discharged down to VResume threshold\n");
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}
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if (pm2->pm2_int[3] & (PM2XXX_INT4_ITBATTFULL)) {
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if (val & (PM2XXX_INT4_ITBATTFULL)) {
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dev_dbg(pm2->dev , "battery fully detected\n");
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}
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if (pm2->pm2_int[3] & (PM2XXX_INT4_ITCVPHASE)) {
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if (val & (PM2XXX_INT4_ITCVPHASE)) {
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dev_dbg(pm2->dev, "CV phase enter with 0.5C charging\n");
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}
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if (pm2->pm2_int[3] &
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(PM2XXX_INT4_ITVPWR2OVV | PM2XXX_INT4_ITVPWR1OVV)) {
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if (val & (PM2XXX_INT4_ITVPWR2OVV | PM2XXX_INT4_ITVPWR1OVV)) {
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pm2->failure_case = VPWR_OVV;
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ret = pm2xxx_charger_ovv_mngt(pm2, pm2->pm2_int[3] &
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ret = pm2xxx_charger_ovv_mngt(pm2, val &
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(PM2XXX_INT4_ITVPWR2OVV | PM2XXX_INT4_ITVPWR1OVV));
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dev_dbg(pm2->dev, "VPWR/VSYSTEM overvoltage detected\n");
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}
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if (pm2->pm2_int[3] & (PM2XXX_INT4_S_ITBATTEMPCOLD |
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if (val & (PM2XXX_INT4_S_ITBATTEMPCOLD |
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PM2XXX_INT4_S_ITBATTEMPHOT)) {
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ret = pm2xxx_charger_batt_therm_mngt(pm2,
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pm2->pm2_int[3] & (PM2XXX_INT4_S_ITBATTEMPCOLD |
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PM2XXX_INT4_S_ITBATTEMPHOT));
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ret = pm2xxx_charger_batt_therm_mngt(pm2, val &
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(PM2XXX_INT4_S_ITBATTEMPCOLD |
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PM2XXX_INT4_S_ITBATTEMPHOT));
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dev_dbg(pm2->dev, "BTEMP is too Low/High\n");
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}
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return ret;
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}
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static int pm2_int_reg4(struct pm2xxx_charger *pm2)
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static int pm2_int_reg4(void *pm2_data, int val)
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{
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struct pm2xxx_charger *pm2 = pm2_data;
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int ret = 0;
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if (pm2->pm2_int[4] & PM2XXX_INT5_ITVSYSTEMOVV) {
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if (val & PM2XXX_INT5_ITVSYSTEMOVV) {
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pm2->failure_case = VSYSTEM_OVV;
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ret = pm2xxx_charger_ovv_mngt(pm2, pm2->pm2_int[4] &
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ret = pm2xxx_charger_ovv_mngt(pm2, val &
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PM2XXX_INT5_ITVSYSTEMOVV);
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dev_dbg(pm2->dev, "VSYSTEM overvoltage detected\n");
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}
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if (pm2->pm2_int[4] & (PM2XXX_INT5_ITTHERMALWARNINGFALL |
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if (val & (PM2XXX_INT5_ITTHERMALWARNINGFALL |
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PM2XXX_INT5_ITTHERMALWARNINGRISE |
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PM2XXX_INT5_ITTHERMALSHUTDOWNFALL |
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PM2XXX_INT5_ITTHERMALSHUTDOWNRISE)) {
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dev_dbg(pm2->dev, "BTEMP die temperature is too Low/High\n");
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ret = pm2xxx_charger_die_therm_mngt(pm2, pm2->pm2_int[4] &
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ret = pm2xxx_charger_die_therm_mngt(pm2, val &
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(PM2XXX_INT5_ITTHERMALWARNINGFALL |
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PM2XXX_INT5_ITTHERMALWARNINGRISE |
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PM2XXX_INT5_ITTHERMALSHUTDOWNFALL |
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@ -398,41 +400,41 @@ static int pm2_int_reg4(struct pm2xxx_charger *pm2)
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return ret;
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}
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static int pm2_int_reg5(struct pm2xxx_charger *pm2)
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static int pm2_int_reg5(void *pm2_data, int val)
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{
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struct pm2xxx_charger *pm2 = pm2_data;
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int ret = 0;
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if (pm2->pm2_int[5]
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& (PM2XXX_INT6_ITVPWR2DROP | PM2XXX_INT6_ITVPWR1DROP)) {
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if (val & (PM2XXX_INT6_ITVPWR2DROP | PM2XXX_INT6_ITVPWR1DROP)) {
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dev_dbg(pm2->dev, "VMPWR drop to VBAT level\n");
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}
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if (pm2->pm2_int[5] & (PM2XXX_INT6_ITVPWR2VALIDRISE |
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PM2XXX_INT6_ITVPWR1VALIDRISE |
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PM2XXX_INT6_ITVPWR2VALIDFALL |
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PM2XXX_INT6_ITVPWR1VALIDFALL)) {
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if (val & (PM2XXX_INT6_ITVPWR2VALIDRISE |
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PM2XXX_INT6_ITVPWR1VALIDRISE |
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PM2XXX_INT6_ITVPWR2VALIDFALL |
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PM2XXX_INT6_ITVPWR1VALIDFALL)) {
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dev_dbg(pm2->dev, "Falling/Rising edge on WPWR1/2\n");
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}
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return 0;
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return ret;
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}
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static irqreturn_t pm2xxx_irq_int(int irq, void *data)
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{
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struct pm2xxx_charger *pm2 = data;
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int ret, i;
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struct pm2xxx_interrupts *interrupt = pm2->pm2_int;
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int i;
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for (i = 0; i < ARRAY_SIZE(pm2->pm2_int); i++) {
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ret = pm2xxx_reg_read(pm2, pm2xxx_interrupt_registers[i],
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&(pm2->pm2_int[i]));
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for (i = 0; i < PM2XXX_NUM_INT_REG; i++) {
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pm2xxx_reg_read(pm2,
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pm2xxx_interrupt_registers[i],
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&(interrupt->reg[i]));
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if (interrupt->reg[i] > 0)
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interrupt->handler[i](pm2, interrupt->reg[i]);
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}
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pm2_int_reg0(pm2);
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pm2_int_reg1(pm2);
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pm2_int_reg2(pm2);
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pm2_int_reg3(pm2);
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pm2_int_reg4(pm2);
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pm2_int_reg5(pm2);
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return IRQ_HANDLED;
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}
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@ -538,7 +540,7 @@ static int pm2xxx_charger_update_charger_current(struct ux500_charger *charger,
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curr_index = pm2xxx_current_to_regval(ich_out);
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if (curr_index < 0) {
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dev_err(pm2->dev,
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"Charger current too high: charging not started\n");
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"Charger current too high, charging not started\n");
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return -ENXIO;
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}
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@ -614,6 +616,59 @@ static int pm2xxx_charging_init(struct pm2xxx_charger *pm2)
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ret = pm2xxx_reg_write(pm2, PM2XXX_BATT_CTRL_REG4,
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PM2XXX_CH_WD_PRECH_PHASE_60MIN);
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/* Disable auto timeout */
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ret = pm2xxx_reg_write(pm2, PM2XXX_BATT_CTRL_REG5,
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PM2XXX_CH_WD_AUTO_TIMEOUT_20MIN);
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/*
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* EOC current level = 100mA
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* Precharge current level = 100mA
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* CC current level = 1000mA
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*/
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ret = pm2xxx_reg_write(pm2, PM2XXX_BATT_CTRL_REG6,
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(PM2XXX_DIR_CH_CC_CURRENT_1000MA |
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PM2XXX_CH_PRECH_CURRENT_100MA |
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PM2XXX_CH_EOC_CURRENT_100MA));
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/*
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* recharge threshold = 3.8V
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* Precharge to CC threshold = 2.9V
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*/
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ret = pm2xxx_reg_write(pm2, PM2XXX_BATT_CTRL_REG7,
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(PM2XXX_CH_PRECH_VOL_2_9 | PM2XXX_CH_VRESUME_VOL_3_8));
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/* float voltage charger level = 4.2V */
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ret = pm2xxx_reg_write(pm2, PM2XXX_BATT_CTRL_REG8,
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PM2XXX_CH_VOLT_4_2);
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/* Voltage drop between VBAT and VSYS in HW charging = 300mV */
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ret = pm2xxx_reg_write(pm2, PM2XXX_BATT_CTRL_REG9,
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(PM2XXX_CH_150MV_DROP_300MV | PM2XXX_CHARCHING_INFO_DIS |
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PM2XXX_CH_CC_REDUCED_CURRENT_IDENT |
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PM2XXX_CH_CC_MODEDROP_DIS));
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/* Input charger level of over voltage = 10V */
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ret = pm2xxx_reg_write(pm2, PM2XXX_INP_VOLT_VPWR2,
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PM2XXX_VPWR2_OVV_10);
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ret = pm2xxx_reg_write(pm2, PM2XXX_INP_VOLT_VPWR1,
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PM2XXX_VPWR1_OVV_10);
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/* Input charger drop */
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ret = pm2xxx_reg_write(pm2, PM2XXX_INP_DROP_VPWR2,
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(PM2XXX_VPWR2_HW_OPT_DIS | PM2XXX_VPWR2_VALID_DIS |
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PM2XXX_VPWR2_DROP_DIS));
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ret = pm2xxx_reg_write(pm2, PM2XXX_INP_DROP_VPWR1,
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(PM2XXX_VPWR1_HW_OPT_DIS | PM2XXX_VPWR1_VALID_DIS |
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PM2XXX_VPWR1_DROP_DIS));
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/* Disable battery low monitoring */
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ret = pm2xxx_reg_write(pm2, PM2XXX_BATT_LOW_LEV_COMP_REG,
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PM2XXX_VBAT_LOW_MONITORING_DIS);
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/* Disable LED */
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ret = pm2xxx_reg_write(pm2, PM2XXX_LED_CTRL_REG,
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PM2XXX_LED_SELECT_DIS);
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return ret;
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}
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@ -764,6 +819,15 @@ static void pm2xxx_charger_check_main_thermal_prot_work(
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{
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};
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static struct pm2xxx_interrupts pm2xxx_int = {
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.handler[0] = pm2_int_reg0,
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.handler[1] = pm2_int_reg1,
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.handler[2] = pm2_int_reg2,
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.handler[3] = pm2_int_reg3,
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.handler[4] = pm2_int_reg4,
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.handler[5] = pm2_int_reg5,
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};
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static struct pm2xxx_irq pm2xxx_charger_irq[] = {
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{"PM2XXX_IRQ_INT", pm2xxx_irq_int},
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};
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@ -797,6 +861,8 @@ static int __devinit pm2xxx_wall_charger_probe(struct i2c_client *i2c_client,
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pm2->dev = &i2c_client->dev;
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pm2->gpadc = ab8500_gpadc_get("ab8500-gpadc.0");
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pm2->pm2_int = &pm2xxx_int;
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/* get charger spcific platform data */
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if (!pl_data->wall_charger) {
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dev_err(pm2->dev, "no charger platform data supplied\n");
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@ -844,6 +910,7 @@ static int __devinit pm2xxx_wall_charger_probe(struct i2c_client *i2c_client,
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ARRAY_SIZE(pm2xxx_charger_voltage_map) - 1];
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pm2->ac_chg.max_out_curr = pm2xxx_charger_current_map[
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ARRAY_SIZE(pm2xxx_charger_current_map) - 1];
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pm2->ac_chg.enabled = true;
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/* Create a work queue for the charger */
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pm2->charger_wq =
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@ -34,6 +34,8 @@
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#define WD_TIMER 0x30 /* 4min */
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#define WD_KICK_INTERVAL (60 * HZ)
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#define PM2XXX_NUM_INT_REG 0x6
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/* Constant voltage/current */
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#define PM2XXX_CONST_CURR 0x0
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#define PM2XXX_CONST_VOLT 0x1
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#define PM2XXX_VPWR2_OVV_10 0x2
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#define PM2XXX_VPWR2_OVV_NONE 0x3
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/* Input charger drop VPWR2 */
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#define PM2XXX_VPWR2_HW_OPT_EN (0x1<<4)
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#define PM2XXX_VPWR2_HW_OPT_DIS (0x0<<4)
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#define PM2XXX_VPWR2_VALID_EN (0x1<<3)
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#define PM2XXX_VPWR2_VALID_DIS (0x0<<3)
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#define PM2XXX_VPWR2_DROP_EN (0x1<<2)
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#define PM2XXX_VPWR2_DROP_DIS (0x0<<2)
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/* Input charger voltage VPWR1 */
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#define PM2XXX_VPWR1_OVV_6_0 0x0
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#define PM2XXX_VPWR1_OVV_6_3 0x1
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#define PM2XXX_VPWR1_OVV_10 0x2
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#define PM2XXX_VPWR1_OVV_NONE 0x3
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/* Input charger drop VPWR1 */
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#define PM2XXX_VPWR1_HW_OPT_EN (0x1<<4)
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#define PM2XXX_VPWR1_HW_OPT_DIS (0x0<<4)
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#define PM2XXX_VPWR1_VALID_EN (0x1<<3)
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#define PM2XXX_VPWR1_VALID_DIS (0x0<<3)
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||||
#define PM2XXX_VPWR1_DROP_EN (0x1<<2)
|
||||
#define PM2XXX_VPWR1_DROP_DIS (0x0<<2)
|
||||
|
||||
/* Battery low level comparator control register */
|
||||
#define PM2XXX_VBAT_LOW_MONITORING_DIS 0x0
|
||||
#define PM2XXX_VBAT_LOW_MONITORING_ENA 0x1
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||||
|
@ -446,6 +468,11 @@ struct pm2xxx_charger_event_flags {
|
|||
bool chgwdexp;
|
||||
};
|
||||
|
||||
struct pm2xxx_interrupts {
|
||||
u8 reg[PM2XXX_NUM_INT_REG];
|
||||
int (*handler[PM2XXX_NUM_INT_REG])(void *, int);
|
||||
};
|
||||
|
||||
struct pm2xxx_config {
|
||||
struct i2c_client *pm2xxx_i2c;
|
||||
struct i2c_device_id *pm2xxx_id;
|
||||
|
@ -467,7 +494,7 @@ struct pm2xxx_charger {
|
|||
int old_vbat;
|
||||
int failure_case;
|
||||
int failure_input_ovv;
|
||||
u8 pm2_int[6];
|
||||
struct pm2xxx_interrupts *pm2_int;
|
||||
struct ab8500_gpadc *gpadc;
|
||||
struct regulator *regu;
|
||||
struct pm2xxx_bm_data *bat;
|
||||
|
|
Loading…
Reference in New Issue