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- /* Copyright Statement:
- *
- * This software/firmware and related documentation ("MediaTek Software") are
- * protected under relevant copyright laws. The information contained herein
- * is confidential and proprietary to MediaTek Inc. and/or its licensors.
- * Without the prior written permission of MediaTek inc. and/or its licensors,
- * any reproduction, modification, use or disclosure of MediaTek Software,
- * and information contained herein, in whole or in part, shall be strictly prohibited.
- */
- /* MediaTek Inc. (C) 2015. All rights reserved.
- *
- * BY OPENING THIS FILE, RECEIVER HEREBY UNEQUIVOCALLY ACKNOWLEDGES AND AGREES
- * THAT THE SOFTWARE/FIRMWARE AND ITS DOCUMENTATIONS ("MEDIATEK SOFTWARE")
- * RECEIVED FROM MEDIATEK AND/OR ITS REPRESENTATIVES ARE PROVIDED TO RECEIVER ON
- * AN "AS-IS" BASIS ONLY. MEDIATEK EXPRESSLY DISCLAIMS ANY AND ALL WARRANTIES,
- * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE IMPLIED WARRANTIES OF
- * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE OR NONINFRINGEMENT.
- * NEITHER DOES MEDIATEK PROVIDE ANY WARRANTY WHATSOEVER WITH RESPECT TO THE
- * SOFTWARE OF ANY THIRD PARTY WHICH MAY BE USED BY, INCORPORATED IN, OR
- * SUPPLIED WITH THE MEDIATEK SOFTWARE, AND RECEIVER AGREES TO LOOK ONLY TO SUCH
- * THIRD PARTY FOR ANY WARRANTY CLAIM RELATING THERETO. RECEIVER EXPRESSLY ACKNOWLEDGES
- * THAT IT IS RECEIVER'S SOLE RESPONSIBILITY TO OBTAIN FROM ANY THIRD PARTY ALL PROPER LICENSES
- * CONTAINED IN MEDIATEK SOFTWARE. MEDIATEK SHALL ALSO NOT BE RESPONSIBLE FOR ANY MEDIATEK
- * SOFTWARE RELEASES MADE TO RECEIVER'S SPECIFICATION OR TO CONFORM TO A PARTICULAR
- * STANDARD OR OPEN FORUM. RECEIVER'S SOLE AND EXCLUSIVE REMEDY AND MEDIATEK'S ENTIRE AND
- * CUMULATIVE LIABILITY WITH RESPECT TO THE MEDIATEK SOFTWARE RELEASED HEREUNDER WILL BE,
- * AT MEDIATEK'S OPTION, TO REVISE OR REPLACE THE MEDIATEK SOFTWARE AT ISSUE,
- * OR REFUND ANY SOFTWARE LICENSE FEES OR SERVICE CHARGE PAID BY RECEIVER TO
- * MEDIATEK FOR SUCH MEDIATEK SOFTWARE AT ISSUE.
- */
- #include <target/board.h>
- #ifdef MTK_KERNEL_POWER_OFF_CHARGING
- #define CFG_POWER_CHARGING
- #endif
- #ifdef CFG_POWER_CHARGING
- #include <platform/mt_typedefs.h>
- #include <platform/mt_reg_base.h>
- #include <platform/mt_pmic.h>
- #include <platform/upmu_hw.h>
- #include <platform/upmu_common.h>
- #include <platform/boot_mode.h>
- #include <platform/mt_gpt.h>
- #include <platform/mt_rtc.h>
- #include <platform/mt_rtc_hw.h>
- #include <platform/mt_pmic_wrap_init.h>
- #include <platform/mt_pumpexpress.h>
- //#include <platform/mt_disp_drv.h>
- //#include <platform/mtk_wdt.h>
- //#include <platform/mtk_key.h>
- //#include <platform/mt_logo.h>
- #include <platform/mt_leds.h>
- #include <printf.h>
- #include <sys/types.h>
- #include <target/cust_battery.h>
- #if defined(MTK_BQ24261_SUPPORT)
- #include <platform/bq24261.h>
- #endif
- #if defined(MTK_BQ24296_SUPPORT)
- #include <platform/bq24296.h>
- #endif
- #if defined(MTK_NCP1854_SUPPORT)
- #include <platform/ncp1854.h>
- #endif
- #if defined(MTK_BQ25890_SUPPORT)
- #include <platform/bq25890.h>
- #endif
- #if defined(MTK_CHARGER_INTERFACE)
- #include <platform/mtk_charger_intf.h>
- static struct mtk_charger_info *primary_mchr;
- #endif
- #define DLPT_FEATURE_SUPPORT
- #define V_CHARGER_MAX 6500 // 6.5 V
- #undef printf
- /*****************************************************************************
- * Type define
- ****************************************************************************/
- #if defined(CUST_BATTERY_LOWVOL_THRESOLD)
- #define BATTERY_LOWVOL_THRESOLD CUST_BATTERY_LOWVOL_THRESOLD
- #else
- #define BATTERY_LOWVOL_THRESOLD 3450
- #endif
- /*****************************************************************************
- * Global Variable
- ****************************************************************************/
- bool g_boot_reason_change = false;
- kal_uint32 ptim_bat_vol=0;
- kal_int32 ptim_R_curr=0;
- kal_bool g_fg_is_charging = 0;
- extern signed int fg_swocv_v;
- extern signed int fg_swocv_i;
- extern int shutdown_time;
- extern int boot_voltage;
- extern BOOT_ARGUMENT *g_boot_arg;
- /* battery meter parameter */
- #define UNIT_FGCURRENT (381470)
- #define CAR_TUNE_VALUE 1000 //1.00
- #define R_FG_VALUE 100
- #if defined(STD_AC_LARGE_CURRENT)
- int g_std_ac_large_current_en=1;
- #else
- int g_std_ac_large_current_en=0;
- #endif
- /*****************************************************************************
- * Externl Variable
- ****************************************************************************/
- extern bool g_boot_menu;
- extern void mtk_wdt_restart(void);
- void kick_charger_wdt(void)
- {
- /*
- //mt6325_upmu_set_rg_chrwdt_td(0x0); // CHRWDT_TD, 4s
- mt6325_upmu_set_rg_chrwdt_td(0x3); // CHRWDT_TD, 32s for keep charging for lk to kernel
- mt6325_upmu_set_rg_chrwdt_wr(1); // CHRWDT_WR
- mt6325_upmu_set_rg_chrwdt_int_en(1); // CHRWDT_INT_EN
- mt6325_upmu_set_rg_chrwdt_en(1); // CHRWDT_EN
- mt6325_upmu_set_rg_chrwdt_flag_wr(1); // CHRWDT_WR
- */
- #if 0 /* FIXME: TBD */
- pmic_set_register_value(PMIC_RG_CHRWDT_TD,3); // CHRWDT_TD, 32s for keep charging for lk to kernel
- pmic_set_register_value(PMIC_RG_CHRWDT_WR,1); // CHRWDT_WR
- pmic_set_register_value(PMIC_RG_CHRWDT_INT_EN,1); // CHRWDT_INT_EN
- pmic_set_register_value(PMIC_RG_CHRWDT_EN,1); // CHRWDT_EN
- pmic_set_register_value(PMIC_RG_CHRWDT_FLAG_WR,1);// CHRWDT_WR
- #endif
- }
- #if defined(MTK_BATLOWV_NO_PANEL_ON_EARLY)
- kal_bool is_low_battery(kal_int32 val)
- {
- static UINT8 g_bat_low = 0xFF;
- //low battery only justice once in lk
- if (0xFF != g_bat_low)
- return g_bat_low;
- else
- g_bat_low = FALSE;
- #if defined(SWCHR_POWER_PATH)
- if (0 == val)
- val = get_i_sense_volt(1);
- #else
- if (0 == val)
- val = get_bat_sense_volt(1);
- #endif
- if (val < BATTERY_LOWVOL_THRESOLD) {
- dprintf(INFO, "%s, TRUE\n", __FUNCTION__);
- g_bat_low = 0x1;
- }
- if (FALSE == g_bat_low)
- dprintf(INFO, "%s, FALSE\n", __FUNCTION__);
- return g_bat_low;
- }
- #endif
- void pchr_turn_on_charging(kal_bool bEnable)
- {
- #ifdef MTK_CHARGER_INTERFACE
- int ret = 0;
- bool enable = bEnable ? true : false;
- #endif
- #if 0 /* FIXME: TBD */
- pmic_set_register_value(PMIC_RG_USBDL_RST,1);//force leave USBDL mode
- //mt6325_upmu_set_rg_usbdl_rst(1); //force leave USBDL mode
- pmic_set_register_value(PMIC_RG_BC11_RST,1);//BC11_RST
- kick_charger_wdt();
- pmic_set_register_value(PMIC_RG_NORM_CS_VTH,0xC); // CS_VTH, 450mA
- //mt6325_upmu_set_rg_cs_vth(0xC); // CS_VTH, 450mA
- pmic_set_register_value(PMIC_RG_CSDAC_EN,bEnable);
- //mt6325_upmu_set_rg_csdac_en(1); // CSDAC_EN
- pmic_set_register_value(PMIC_RG_NORM_CHR_EN,bEnable);
- //mt6325_upmu_set_rg_chr_en(1); // CHR_EN
- pmic_set_register_value(PMIC_RG_CSDAC_MODE,1);//CSDAC_MODE
- pmic_set_register_value(PMIC_RG_CSDAC_EN,1);
- #endif
- #if defined(MTK_BQ24261_SUPPORT)
- bq24261_hw_init();
- bq24261_charging_enable(bEnable);
- bq24261_dump_register();
- #endif
- #if defined(MTK_BQ24296_SUPPORT)
- bq24296_hw_init();
- bq24296_charging_enable(bEnable);
- bq24296_dump_register();
- #endif
- #if defined(MTK_NCP1854_SUPPORT)
- ncp1854_hw_init();
- ncp1854_charging_enable(bEnable);
- ncp1854_dump_register();
- #endif
- #if defined(MTK_BQ25890_SUPPORT)
- bq25890_hw_init();
- bq25890_charging_enable(bEnable);
- bq25890_dump_register();
- #endif
- #ifdef MTK_CHARGER_INTERFACE
- ret = mtk_charger_enable_charging(primary_mchr, enable);
- if (ret < 0)
- dprintf(CRITICAL, "%s: %s charging failed, ret = %d\n",
- __func__, (enable ? "enable" : "disable"), ret);
- mtk_charger_dump_register(primary_mchr);
- if (ret < 0)
- dprintf(CRITICAL, "%s: dump register failed, ret = %d\n",
- __func__, ret);
- #endif
- }
- void pchr_turn_off_charging(void)
- {
- #if 0 /* TBD */
- pmic_set_register_value(PMIC_RG_CHRWDT_INT_EN,0);// CHRWDT_INT_EN
- pmic_set_register_value(PMIC_RG_CHRWDT_EN,0);// CHRWDT_EN
- pmic_set_register_value(PMIC_RG_CHRWDT_FLAG_WR,0);// CHRWDT_FLAG
- pmic_set_register_value(PMIC_RG_CSDAC_EN,0);// CSDAC_EN
- pmic_set_register_value(PMIC_RG_NORM_CHR_EN,0);// CHR_EN
- pmic_set_register_value(PMIC_RG_HWCV_EN,0);// RG_HWCV_EN
- #endif
- }
- /*
- * Switch Charger Power Path switch
- */
- void switch_charger_power_path_enable(kal_bool enable)
- {
- #if defined(MTK_BQ25890_SUPPORT)
- if (enable == KAL_TRUE) {
- bq25890_set_FORCE_VINDPM(1);
- bq25890_set_VINDPM(0x14);
- } else {
- bq25890_set_FORCE_VINDPM(1);
- bq25890_set_VINDPM(0x7F);
- }
- #elif defined(MTK_CHARGER_INTERFACE)
- int ret = 0;
- bool _enable = enable ? true : false;
- ret = mtk_charger_enable_power_path(primary_mchr, _enable);
- if (ret < 0)
- dprintf(CRITICAL, "%s: %s power path failed, ret = %d\n",
- __func__, (_enable ? "enable" : "disable"), ret);
- #endif
- }
- int is_charging = 0;
- /*
- * enter this function when low battery with charger
- * For BQ25896, power path support can provide current and voltage for cell phone to boot directly to kernel.
- */
- void check_bat_protect_status()
- {
- kal_int32 bat_val = 0;
- int current,chr_volt,cnt=0,i;
- #if defined(SWCHR_POWER_PATH)
- bat_val = get_i_sense_volt(5);
- #else
- bat_val = get_bat_sense_volt(5);
- #endif
- dprintf(CRITICAL, "[%s]: check VBAT=%d mV with %d mV, start charging... \n", __FUNCTION__, bat_val, BATTERY_LOWVOL_THRESOLD);
- while (bat_val < BATTERY_LOWVOL_THRESOLD) {
- mtk_wdt_restart();
- if (upmu_is_chr_det() == KAL_FALSE) {
- dprintf(CRITICAL, "[BATTERY] No Charger, Power OFF !\n");
- mt6575_power_off();
- while (1);
- }
- chr_volt= get_charger_volt(1);
- if (chr_volt>V_CHARGER_MAX) {
- dprintf(CRITICAL, "[BATTERY] charger voltage is too high :%d , threshold is %d !\n",chr_volt,V_CHARGER_MAX);
- #if defined(SWCHR_POWER_PATH)
- mt6575_power_off();
- #endif
- break;
- }
- /*pmic_set_register_value(PMIC_BATON_TDET_EN, 1);*/
- pmic_set_register_value(PMIC_RG_BATON_EN, 1);
- if (pmic_get_register_value(PMIC_RGS_BATON_UNDET) == 1) {
- dprintf(CRITICAL, "[BATTERY] No battry plug-in. Power Off.");
- mt6575_power_off();
- break;
- }
- dprintf(CRITICAL, "[%s]: check VBAT=%d mV with %d mV, start charging... \n", __FUNCTION__, bat_val, BATTERY_LOWVOL_THRESOLD);
- is_charging = 1;
- pchr_turn_on_charging(KAL_TRUE);
- #if defined(SWCHR_POWER_PATH)
- thread_sleep(10000);
- #else
- cnt=0;
- for (i=0; i<10; i++) {
- current=get_charging_current(1);
- chr_volt=get_charger_volt(1);
- if (current<100 && chr_volt<4400) {
- cnt++;
- dprintf(CRITICAL, "[BATTERY] charging current=%d charger volt=%d\n\r",current,chr_volt);
- } else {
- dprintf(CRITICAL, "[BATTERY] charging current=%d charger volt=%d\n\r",current,chr_volt);
- cnt=0;
- }
- }
- if (cnt>=8) {
- dprintf(CRITICAL, "[BATTERY] charging current and charger volt too low !! \n\r",cnt);
- pchr_turn_off_charging();
- #ifndef NO_POWER_OFF
- mt6575_power_off();
- #endif
- while (1) {
- dprintf(CRITICAL, "If you see the log, please check with RTC power off API\n\r");
- }
- }
- mdelay(50);
- #endif
- #if defined(SWCHR_POWER_PATH)
- #ifndef MTK_NCP1854_SUPPORT /* NCP1854 needs enable charging to have power path */
- pchr_turn_on_charging(KAL_FALSE);
- mdelay(100);
- #endif
- bat_val = get_i_sense_volt(5);
- #else
- bat_val = get_bat_sense_volt(5);
- #endif
- dprintf(CRITICAL, "[%s]: check VBAT=%d mV \n", __FUNCTION__, bat_val);
- }
- mtk_wdt_restart();
- dprintf(CRITICAL, "[%s]: check VBAT=%d mV with %d mV, stop charging... \n", __FUNCTION__, bat_val, BATTERY_LOWVOL_THRESOLD);
- }
- bool mtk_bat_allow_backlight_enable(void)
- {
- int bat_vol = 0;
- #if defined(SWCHR_POWER_PATH)
- bat_vol = get_i_sense_volt(1);
- #else
- bat_vol = get_bat_sense_volt(1);
- #endif
- if (bat_vol > (BATTERY_LOWVOL_THRESOLD + 150))
- return true;
- return false;
- }
- static kal_uint32 fg_get_data_ready_status(void)
- {
- kal_uint32 ret=0;
- kal_uint32 temp_val=0;
- ret=pmic_read_interface(MT6355_FGADC_CON0, &temp_val, 0xFFFF, 0x0);
- dprintf(CRITICAL, "[fg_get_data_ready_status] Reg[0x%x]=0x%x\r\n", MT6355_FGADC_CON0, temp_val);
- temp_val = (temp_val & (PMIC_FG_LATCHDATA_ST_MASK << PMIC_FG_LATCHDATA_ST_SHIFT)) >> PMIC_FG_LATCHDATA_ST_SHIFT;
- return temp_val;
- }
- void fgauge_read_IM_current(void *data)
- {
- unsigned short uvalue16 = 0;
- signed int dvalue = 0;
- /*int m = 0;*/
- long long Temp_Value = 0;
- /*unsigned int ret = 0;*/
- uvalue16 = pmic_get_register_value(PMIC_FG_R_CURR);
- dprintf(CRITICAL,"[fgauge_read_IM_current] : FG_CURRENT = %x\r\n",
- uvalue16);
- /*calculate the real world data */
- dvalue = (unsigned int) uvalue16;
- if (dvalue == 0) {
- Temp_Value = (long long) dvalue;
- g_fg_is_charging = false;
- } else if (dvalue > 32767) {
- /* > 0x8000 */
- Temp_Value = (long long) (dvalue - 65535);
- Temp_Value = Temp_Value - (Temp_Value * 2);
- g_fg_is_charging = false;
- } else {
- Temp_Value = (long long) dvalue;
- g_fg_is_charging = true;
- }
- Temp_Value = Temp_Value * UNIT_FGCURRENT;
- Temp_Value=Temp_Value/100000;
- dvalue = (unsigned int) Temp_Value;
- if (g_fg_is_charging == true)
- dprintf(CRITICAL,
- "[fgauge_read_IM_current] current(charging) = %d mA\r\n",
- dvalue);
- else
- dprintf(CRITICAL,
- "[fgauge_read_IM_current] current(discharging) = %d mA\r\n",
- dvalue);
- /* Auto adjust value */
- if (R_FG_VALUE != 100) {
- dprintf(CRITICAL,
- "[fgauge_read_IM_current] Auto adjust value due to the Rfg is %d\n Ori current=%d, ",
- R_FG_VALUE, dvalue);
- dvalue = (dvalue * 100) / R_FG_VALUE;
- dprintf(CRITICAL,"[fgauge_read_IM_current] new current=%d\n",
- dvalue);
- }
- dprintf(CRITICAL,"[fgauge_read_IM_current] ori current=%d\n", dvalue);
- dvalue = ((dvalue * CAR_TUNE_VALUE) / 1000);
- dprintf(CRITICAL,"[fgauge_read_IM_current] final current=%d (ratio=%d)\n",
- dvalue, CAR_TUNE_VALUE);
- *(signed int *) (data) = dvalue;
- }
- void do_ptim(void)
- {
- kal_uint32 vbat_reg;
- pmic_set_register_value(PMIC_AUXADC_SPL_NUM_LARGE, 0x0006);
- pmic_set_register_value(PMIC_AUXADC_IMP_AUTORPT_PRD,6);
- #if 0 /* default use hw control, no need to set CK_PDN_HWEN to sw mode */
- pmic_set_register_value(PMIC_CLK_AUXADC_SMPS_CK_PDN,0);
- pmic_set_register_value(PMIC_CLK_AUXADC_SMPS_CK_PDN_HWEN,0);
- pmic_set_register_value(PMIC_RG_AUXADC_CK_PDN_HWEN,0);
- pmic_set_register_value(PMIC_RG_AUXADC_CK_PDN,0);
- #endif
- pmic_set_register_value(PMIC_AUXADC_IMP_AUTORPT_EN,1); /*Peter-SW:55,56*/
- pmic_set_register_value(PMIC_AUXADC_CLR_IMP_CNT_STOP,1);
- pmic_set_register_value(PMIC_AUXADC_IMPEDANCE_IRQ_CLR,1);
- /*restore to initial state */
- pmic_set_register_value(PMIC_AUXADC_CLR_IMP_CNT_STOP,0);
- pmic_set_register_value(PMIC_AUXADC_IMPEDANCE_IRQ_CLR,0);
- /*set issue interrupt */
- /*pmic_set_register_value(PMIC_RG_INT_EN_AUXADC_IMP,1); */
- pmic_set_register_value(PMIC_AUXADC_IMPEDANCE_CHSEL,0);
- /*pmic_set_register_value(PMIC_AUXADC_IMP_AUTORPT_EN,1);*//*Peter-SW:55,56*/
- pmic_set_register_value(PMIC_AUXADC_IMPEDANCE_CNT,3);
- pmic_set_register_value(PMIC_AUXADC_IMPEDANCE_MODE,1);
- while (pmic_get_register_value(PMIC_AUXADC_IMPEDANCE_IRQ_STATUS)==0) {
- /*PMICLOG("[do_ptim] PMIC_AUXADC_IMPEDANCE_IRQ_STATUS= %d \n",
- pmic_get_register_value(PMIC_AUXADC_IMPEDANCE_IRQ_STATUS)); */
- mdelay(1);
- }
- /*disable */
- /*pmic_set_register_value(PMIC_AUXADC_IMP_AUTORPT_EN,0);*//*Peter-SW:55,56*/
- pmic_set_register_value(PMIC_AUXADC_IMPEDANCE_MODE,0);
- /*clear irq */
- pmic_set_register_value(PMIC_AUXADC_CLR_IMP_CNT_STOP,1);
- pmic_set_register_value(PMIC_AUXADC_IMPEDANCE_IRQ_CLR,1);
- pmic_set_register_value(PMIC_AUXADC_CLR_IMP_CNT_STOP,0);
- pmic_set_register_value(PMIC_AUXADC_IMPEDANCE_IRQ_CLR,0);
- pmic_set_register_value(PMIC_AUXADC_IMP_AUTORPT_EN,0); /*Peter-SW:55,56*/
- vbat_reg=pmic_get_register_value(PMIC_AUXADC_ADC_OUT_IMP_AVG);
- ptim_bat_vol=(vbat_reg*3*18000)/32768;
- fgauge_read_IM_current((void *)&ptim_R_curr);
- /*dprintf(CRITICAL, "******** [do_ptim] Done!\n" ); */
- }
- void check_sw_ocv(int bat_vol)
- {
- pchr_turn_on_charging(KAL_FALSE);
- mdelay(50);
- do_ptim();
- fg_swocv_v = ptim_bat_vol;
- if (g_fg_is_charging == true)
- fg_swocv_i = ptim_R_curr;
- else
- fg_swocv_i = -ptim_R_curr;
- dprintf(CRITICAL, "[check_sw_ocv]%d ptim[%d %d] fg_swocv[%d %d] boot_vbat:%d shutdowntime:%d vbat:%d\n",
- g_fg_is_charging,
- ptim_bat_vol, ptim_R_curr, fg_swocv_v, fg_swocv_i, g_boot_arg->boot_voltage, g_boot_arg->shutdown_time,
- bat_vol);
- shutdown_time = g_boot_arg->shutdown_time;
- boot_voltage = g_boot_arg->boot_voltage;
- pchr_turn_on_charging(KAL_TRUE);
- }
- void mt65xx_bat_init(void)
- {
- #ifdef MTK_CHARGER_INTERFACE
- int ret = 0;
- #endif /* MTK_CHARGER_INTERFACE */
- kal_int32 bat_vol;
- #if defined(SWCHR_POWER_PATH) || defined(MTK_PUMP_EXPRESS_PLUS_SUPPORT)
- kal_int32 chr_volt;
- kal_int32 rc = 0;
- #endif
- // Low Battery Safety Booting
- /* Get charger interface */
- #ifdef MTK_CHARGER_INTERFACE
- mtk_charger_init();
- primary_mchr = mtk_charger_get_by_name("primary_charger");
- if (!primary_mchr)
- dprintf(CRITICAL, "%s: get primary charger failed\n", __func__);
- #endif
- #if defined(SWCHR_POWER_PATH)
- bat_vol = get_i_sense_volt(1);
- #else
- bat_vol = get_bat_sense_volt(1);
- #endif
- check_sw_ocv(bat_vol);
- //pchr_turn_on_charging(KAL_TRUE);
- dprintf(INFO, "[mt65xx_bat_init] check VBAT=%d mV with %d mV\n", bat_vol, BATTERY_LOWVOL_THRESOLD);
- #if defined(MTK_PUMP_EXPRESS_PLUS_SUPPORT) || defined(MTK_PUMP_EXPRESS_PLUS_20_SUPPORT)
- /*Try to reset PE+ adapter once abnormal voltage is found*/
- chr_volt = get_charger_volt(1);
- while (chr_volt > V_CHARGER_MAX) {
- dprintf(CRITICAL, "[mt65xx_bat_init] PE+ adpater should be reset to 5V now\n");
- pumpex_reset_adapter_enble(1);
- mdelay(250);
- pumpex_reset_adapter_enble(0);
- chr_volt = get_charger_volt(1);
- rc++;
- if (rc == 3)
- break;
- }
- #endif
- if (g_boot_mode == KERNEL_POWER_OFF_CHARGING_BOOT && (pmic_get_register_value(PMIC_PWRKEY_DEB)==0) ) {
- dprintf(CRITICAL, "[mt65xx_bat_init] KPOC+PWRKEY => change boot mode\n");
- g_boot_reason_change = true;
- }
- rtc_boot_check(false);
- #ifndef MTK_DISABLE_POWER_ON_OFF_VOLTAGE_LIMITATION
- #ifndef MTK_BATLOWV_NO_PANEL_ON_EARLY
- if (bat_vol < BATTERY_LOWVOL_THRESOLD)
- #else
- if (is_low_battery(bat_vol))
- #endif
- {
- if (g_boot_mode == KERNEL_POWER_OFF_CHARGING_BOOT && upmu_is_chr_det() == KAL_TRUE) {
- dprintf(CRITICAL, "[%s] Kernel Low Battery Power Off Charging Mode\n", __func__);
- g_boot_mode = LOW_POWER_OFF_CHARGING_BOOT;
- check_bat_protect_status();
- } else {
- dprintf(CRITICAL, "[BATTERY] battery voltage(%dmV) <= CLV ! Can not Boot Linux Kernel !! \n\r",bat_vol);
- #ifndef NO_POWER_OFF
- mt6575_power_off();
- #endif
- while (1) {
- dprintf(CRITICAL, "If you see the log, please check with RTC power off API\n\r");
- }
- }
- }
- #endif
- #if defined(SWCHR_POWER_PATH)
- chr_volt = get_charger_volt(1);
- if (chr_volt > V_CHARGER_MAX) {
- dprintf(CRITICAL, "Charger Over Voltage:%d\n, power off...", chr_volt);
- mt6575_power_off();
- }
- #endif
- #if defined(DLPT_FEATURE_SUPPORT)
- if (g_boot_mode != META_BOOT && g_boot_mode != FACTORY_BOOT && g_boot_mode != ATE_FACTORY_BOOT) {
- /*pmic_set_register_value(PMIC_BATON_TDET_EN, 1);*/
- pmic_set_register_value(PMIC_RG_BATON_EN, 1);
- if (pmic_get_register_value(PMIC_RGS_BATON_UNDET) == 1) {
- dprintf(CRITICAL, "[BATTERY] No battry plug-in. Power Off.");
- mt6575_power_off();
- }
- }
- pchr_turn_on_charging(KAL_FALSE);
- /* disable SW charger power path */
- switch_charger_power_path_enable(KAL_FALSE);
- mdelay(50);
- get_dlpt_imix_r();
- /* after get imix, re-enable SW charger power path */
- switch_charger_power_path_enable(KAL_TRUE);
- mdelay(50);
- check_bat_protect_status();
- if (is_charging == 1) {
- pchr_turn_on_charging(KAL_TRUE);
- dprintf(CRITICAL, "turn on charging \n\r");
- }
- #endif //#if defined(DLPT_FEATURE_SUPPORT)
- #ifdef MTK_CHARGER_INTERFACE
- /* disable wdt in case entering fastboot later... */
- ret = mtk_charger_enable_wdt(primary_mchr, false);
- if (ret < 0)
- dprintf(CRITICAL, "%s: disable wdt fail\n", __func__);
- #endif /* MTK_CHARGER_INTERFACE */
- return;
- }
- #if defined(DLPT_FEATURE_SUPPORT)
- int imix_r=170;
- extern kal_uint32 upmu_get_reg_value(kal_uint32 reg);
- void enable_dummy_load(kal_uint32 en)
- {
- if (en==1) {
- /*1. disable isink pdn */ /* no design at 55*/
- /* pmic_set_register_value(PMIC_RG_DRV_32K_CK_PDN, 0); */
- /* enable isink step */
- pmic_set_register_value(PMIC_ISINK_CH0_STEP, 0x7);
- pmic_set_register_value(PMIC_ISINK_CH1_STEP, 0x7);
- pmic_set_register_value(PMIC_ISINK_CH2_STEP, 0x7);
- pmic_set_register_value(PMIC_ISINK_CH3_STEP, 0x7);
- /* double function */
- pmic_set_register_value(PMIC_RG_ISINK3_DOUBLE, 0x1); /*CH3 double on */
- pmic_set_register_value(PMIC_RG_ISINK2_DOUBLE, 0x1); /*CH2 double on */
- pmic_set_register_value(PMIC_RG_ISINK1_DOUBLE, 0); /*CH1 double off */
- pmic_set_register_value(PMIC_RG_ISINK0_DOUBLE, 0); /*CH0 double off */
- /*enable isink */
- pmic_set_register_value(PMIC_ISINK_CH3_BIAS_EN, 0x1);
- pmic_set_register_value(PMIC_ISINK_CH2_BIAS_EN, 0x1);
- pmic_set_register_value(PMIC_ISINK_CH1_BIAS_EN, 0);
- pmic_set_register_value(PMIC_ISINK_CH0_BIAS_EN, 0);
- pmic_set_register_value(PMIC_ISINK_CHOP3_EN, 0); /* no chop */
- pmic_set_register_value(PMIC_ISINK_CHOP2_EN, 0); /* no chop */
- pmic_set_register_value(PMIC_ISINK_CHOP1_EN, 0); /* no chop */
- pmic_set_register_value(PMIC_ISINK_CHOP0_EN, 0); /* no chop */
- pmic_set_register_value(PMIC_ISINK_CH3_EN, 0x1);
- pmic_set_register_value(PMIC_ISINK_CH2_EN, 0x1);
- pmic_set_register_value(PMIC_ISINK_CH1_EN, 0);
- pmic_set_register_value(PMIC_ISINK_CH0_EN, 0);
- /*PMICLOG("[enable dummy load]\n"); */
- } else {
- pmic_set_register_value(PMIC_ISINK_CH3_EN, 0);
- pmic_set_register_value(PMIC_ISINK_CH2_EN, 0);
- pmic_set_register_value(PMIC_ISINK_CH1_EN, 0);
- pmic_set_register_value(PMIC_ISINK_CH0_EN, 0);
- pmic_set_register_value(PMIC_ISINK_CHOP3_EN, 0); /* no chop */
- pmic_set_register_value(PMIC_ISINK_CHOP2_EN, 0); /* no chop */
- pmic_set_register_value(PMIC_ISINK_CHOP1_EN, 0); /* no chop */
- pmic_set_register_value(PMIC_ISINK_CHOP0_EN, 0); /* no chop */
- pmic_set_register_value(PMIC_ISINK_CH3_BIAS_EN, 0);
- pmic_set_register_value(PMIC_ISINK_CH2_BIAS_EN, 0);
- pmic_set_register_value(PMIC_ISINK_CH1_BIAS_EN, 0);
- pmic_set_register_value(PMIC_ISINK_CH0_BIAS_EN, 0);
- /*1. enable isink pdn */ /* no design at 55*/
- /* pmic_set_register_value(PMIC_RG_DRV_32K_CK_PDN, 0x1); */
- /*PMICLOG("[disable dummy load]\n"); */
- }
- }
- int get_rac_val(void)
- {
- int volt_1=0;
- int volt_2=0;
- int curr_1=0;
- int curr_2=0;
- int rac_cal=0;
- int ret=0;
- kal_bool retry_state = KAL_FALSE;
- int retry_count=0;
- do {
- //adc and fg--------------------------------------------------------
- do_ptim();
- dprintf(INFO, "[1,Trigger ADC PTIM mode] volt1=%d, curr_1=%d\n", ptim_bat_vol, ptim_R_curr);
- volt_1=ptim_bat_vol;
- curr_1=ptim_R_curr;
- dprintf(INFO, "[2,enable dummy load]");
- enable_dummy_load(1);
- /* debug to measure bat volt & Isense */
- /* pmic_set_register_value(PMIC_RG_VIBR_EN, 0x1); */
- mdelay(1);
- //Wait --------------------------------------------------------------
- //adc and fg--------------------------------------------------------
- do_ptim();
- dprintf(INFO, "[3,Trigger ADC PTIM mode again]0717 volt2=%d, curr_2=%d\n", ptim_bat_vol, ptim_R_curr);
- volt_2=ptim_bat_vol;
- curr_2=ptim_R_curr;
- //Disable dummy load-------------------------------------------------
- enable_dummy_load(0);
- /* debug to measure bat volt & Isense */
- /*pmic_set_register_value(PMIC_RG_VIBR_EN, 0); */
- //Calculate Rac------------------------------------------------------
- if ( (curr_2-curr_1) >= 700 && (curr_2-curr_1) <= 1200 && (volt_1-volt_2)>=80 && (volt_1 - volt_2) <= 2000 ) { //40.0mA
- rac_cal=((volt_1-volt_2)*1000)/(curr_2-curr_1); //m-ohm
- if (rac_cal<0) {
- ret = (rac_cal-(rac_cal*2))*1;
- } else {
- ret = rac_cal*1;
- }
- } else {
- ret=-1;
- dprintf(CRITICAL, "[4,Calculate Rac] bypass due to (curr_x-curr_y) < 40mA\n");
- }
- dprintf(INFO, "[5,Calculate Rac] volt_1=%d,volt_2=%d,curr_1=%d,curr_2=%d,rac_cal=%d,ret=%d,retry_count=%d,0x%x,0x%x\n",
- volt_1,volt_2,curr_1,curr_2,rac_cal,ret,retry_count,upmu_get_reg_value(0x3310),upmu_get_reg_value(0x3370));
- dprintf(CRITICAL, "[6,Calculate Rac] %d,%d,%d,%d,%d,%d,%d\n",
- volt_1,volt_2,curr_1,curr_2,rac_cal,ret,retry_count);
- //------------------------
- retry_count++;
- if ((retry_count < 3) && (ret == -1)) retry_state = KAL_TRUE;
- else retry_state = KAL_FALSE;
- } while (retry_state == KAL_TRUE);
- return ret;
- }
- void get_dlpt_imix_r(void)
- {
- int rac_val[5],rac_val_avg=0,rac_val_sum=0;
- int volt[5],curr[5],volt_avg=0,curr_avg=0;
- int imix;
- int i;
- int validcnt=0;
- int min=1000,max=0;
- for (i=0; i<5; i++) {
- rac_val[i]=get_rac_val();
- if (rac_val[i]<=min && rac_val[i]!=-1)
- min=rac_val[i];
- if (rac_val[i]>=max)
- max=rac_val[i];
- if (rac_val[i]!=-1) {
- rac_val_sum+=rac_val[i];
- validcnt++;
- }
- }
- if (validcnt>=4) {
- rac_val_sum=rac_val_sum-min-max;
- imix_r=rac_val_sum/(validcnt-2);
- } else if (validcnt!=0) {
- imix_r=rac_val_sum/validcnt;
- }
- dprintf(CRITICAL, "[dlpt_R] %d,%d,%d,%d,%d [%d:%d:%d]%d\n",rac_val[0],rac_val[1],rac_val[2],rac_val[3],rac_val[4],min,max,validcnt,imix_r);
- return;
- }
- #endif //#if defined(DLPT_FEATURE_SUPPORT)
- #else
- #include <platform/mt_typedefs.h>
- #include <platform/mt_reg_base.h>
- #include <printf.h>
- int imix_r=170;
- void mt65xx_bat_init(void)
- {
- dprintf(CRITICAL, "[BATTERY] Skip mt65xx_bat_init !!\n\r");
- dprintf(CRITICAL, "[BATTERY] If you want to enable power off charging, \n\r");
- dprintf(CRITICAL, "[BATTERY] Please #define CFG_POWER_CHARGING!!\n\r");
- }
- #endif
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