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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.
- */
- /******************************************************************************
- * mt_pmic_wrap_init.c - MTK PMIC Wrapper Driver
- *
- * Copyright 2008-2009 MediaTek Co.,Ltd.
- *
- * DESCRIPTION:
- * This file provides API for other drivers to access PMIC registers
- *
- ******************************************************************************/
- #include <platform/mt_pmic_wrap_init.h>
- /*********************start ---internal API**************************************/
- static S32 _pwrap_wacs2_nochk( U32 write, U32 adr, U32 wdata, U32 *rdata );
- static S32 _pwrap_reset_spislv(void);
- static S32 _pwrap_init_dio( U32 dio_en );
- static S32 _pwrap_init_cipher( void );
- static S32 _pwrap_init_reg_clock( U32 regck_sel );
- static BOOL _pwrap_timeout_ns (U64 start_time_ns, U64 timeout_time_ns);
- static U64 _pwrap_get_current_time(void);
- static U64 _pwrap_time2ns (U64 time_us);
- static S32 pwrap_read_nochk( U32 adr, U32 *rdata );
- static S32 pwrap_write_nochk( U32 adr, U32 wdata );
- static S32 _pwrap_wacs2_nochk( U32 write, U32 adr, U32 wdata, U32 *rdata );
- void pwrap_dump_ap_register(void);
- /************* end--internal API************************************************/
- #ifdef PMIC_WRAP_NO_PMIC
- S32 pwrap_wacs2( U32 write, U32 adr, U32 wdata, U32 *rdata )
- {
- PWRAPERR("there is no PMIC real chip,PMIC_WRAP do Nothing\n");
- return 0;
- }
- /**************external API for pmic_wrap user***************************/
- S32 pwrap_read( U32 adr, U32 *rdata )
- {
- return pwrap_wacs2( 0, adr,0,rdata );
- }
- S32 pwrap_write( U32 adr, U32 wdata )
- {
- return pwrap_wacs2( 1, adr,wdata,0 );
- }
- /*
- *pmic_wrap init,init wrap interface
- *
- */
- S32 pwrap_init ( void )
- {
- dprintf(CRITICAL,"[PMIC_WRAP]There is no PMIC real chip, PMIC_WRAP do Nothing.\n");
- return 0;
- }
- S32 pwrap_init_lk ( void )
- {
- return 0;
- }
- #else
- /******************************************************************************
- wrapper timeout
- ******************************************************************************/
- #define PWRAP_TIMEOUT
- /*use the same API name with kernel driver
- *however,the timeout API in uboot use tick instead of ns */
- #ifdef PWRAP_TIMEOUT
- static U64 _pwrap_get_current_time(void)
- {
- return gpt4_get_current_tick();
- }
- static BOOL _pwrap_timeout_ns (U64 start_time, U64 elapse_time)
- {
- return gpt4_timeout_tick(start_time, elapse_time);
- }
- static U64 _pwrap_time2ns (U64 time_us)
- {
- return gpt4_time2tick_us(time_us);
- }
- #else
- static U64 _pwrap_get_current_time(void)
- {
- return 0;
- }
- static BOOL _pwrap_timeout_ns (U64 start_time, U64 elapse_time)//,U64 timeout_ns)
- {
- return FALSE;
- }
- static U64 _pwrap_time2ns (U64 time_us)
- {
- return 0;
- }
- #endif
- typedef U32 (*loop_condition_fp)(U32);
- static inline U32 wait_for_fsm_idle(U32 x)
- {
- return (GET_WACS0_FSM( x ) != WACS_FSM_IDLE );
- }
- static inline U32 wait_for_fsm_vldclr(U32 x)
- {
- return (GET_WACS0_FSM( x ) != WACS_FSM_WFVLDCLR);
- }
- static inline U32 wait_for_sync(U32 x)
- {
- return (GET_SYNC_IDLE0(x) != WACS_SYNC_IDLE);
- }
- static inline U32 wait_for_idle_and_sync(U32 x)
- {
- return ((GET_WACS2_FSM(x) != WACS_FSM_IDLE) || (GET_SYNC_IDLE2(x) != WACS_SYNC_IDLE)) ;
- }
- static inline U32 wait_for_wrap_idle(U32 x)
- {
- return ((GET_WRAP_FSM(x) != 0x0) || (GET_WRAP_CH_DLE_RESTCNT(x) != 0x0));
- }
- static inline U32 wait_for_wrap_state_idle(U32 x)
- {
- return ( GET_WRAP_AG_DLE_RESTCNT( x ) != 0 ) ;
- }
- static inline U32 wait_for_man_idle_and_noreq(U32 x)
- {
- return ( (GET_MAN_REQ(x) != MAN_FSM_NO_REQ ) || (GET_MAN_FSM(x) != MAN_FSM_IDLE) );
- }
- static inline U32 wait_for_man_vldclr(U32 x)
- {
- return (GET_MAN_FSM( x ) != MAN_FSM_WFVLDCLR) ;
- }
- static inline U32 wait_for_cipher_ready(U32 x)
- {
- return (x!=3) ;
- }
- static inline U32 wait_for_stdupd_idle(U32 x)
- {
- return ( GET_STAUPD_FSM(x) != 0x0) ;
- }
- static inline U32 wait_for_state_ready_init(loop_condition_fp fp,U32 timeout_us,U32 wacs_register,U32 *read_reg)
- {
- U64 start_time_ns=0, timeout_ns=0;
- U32 reg_rdata=0x0;
- start_time_ns = _pwrap_get_current_time();
- timeout_ns = _pwrap_time2ns(timeout_us);
- do {
- if (_pwrap_timeout_ns(start_time_ns, timeout_ns)) {
- PWRAPERR("wait_for_state_ready_init timeout when waiting for idle\n");
- return E_PWR_WAIT_IDLE_TIMEOUT;
- }
- reg_rdata = WRAP_RD32(wacs_register);
- } while ( fp(reg_rdata));
- if (read_reg)
- *read_reg = reg_rdata;
- return 0;
- }
- static inline U32 wait_for_state_idle_init(loop_condition_fp fp,U32 timeout_us,U32 wacs_register,U32 wacs_vldclr_register,U32 *read_reg)
- {
- U64 start_time_ns=0, timeout_ns=0;
- U32 reg_rdata;
- start_time_ns = _pwrap_get_current_time();
- timeout_ns = _pwrap_time2ns(timeout_us);
- do {
- if (_pwrap_timeout_ns(start_time_ns, timeout_ns)) {
- PWRAPERR("wait_for_state_idle_init timeout when waiting for idle\n");
- pwrap_dump_ap_register();
- return E_PWR_WAIT_IDLE_TIMEOUT;
- }
- reg_rdata = WRAP_RD32(wacs_register);
- /*if last read command timeout,clear vldclr bit
- *read command state machine:FSM_REQ-->wfdle-->WFVLDCLR;write:FSM_REQ-->idle */
- switch ( GET_WACS0_FSM( reg_rdata ) ) {
- case WACS_FSM_WFVLDCLR:
- WRAP_WR32(wacs_vldclr_register , 1);
- PWRAPERR("WACS_FSM = PMIC_WRAP_WACS_VLDCLR\n");
- break;
- case WACS_FSM_WFDLE:
- PWRAPERR("WACS_FSM = WACS_FSM_WFDLE\n");
- break;
- case WACS_FSM_REQ:
- PWRAPERR("WACS_FSM = WACS_FSM_REQ\n");
- break;
- default:
- break;
- }
- } while ( fp(reg_rdata)); /* IDLE State */
- if (read_reg)
- *read_reg = reg_rdata;
- return 0;
- }
- static inline U32 wait_for_state_idle(loop_condition_fp fp,U32 timeout_us,U32 wacs_register,U32 wacs_vldclr_register,U32 *read_reg)
- {
- U64 start_time_ns=0, timeout_ns=0;
- U32 reg_rdata;
- start_time_ns = _pwrap_get_current_time();
- timeout_ns = _pwrap_time2ns(timeout_us);
- do {
- if (_pwrap_timeout_ns(start_time_ns, timeout_ns)) {
- PWRAPERR("wait_for_state_idle timeout when waiting for idle\n");
- pwrap_dump_ap_register();
- return E_PWR_WAIT_IDLE_TIMEOUT;
- }
- reg_rdata = WRAP_RD32(wacs_register);
- if ( GET_INIT_DONE0( reg_rdata ) != WACS_INIT_DONE) {
- PWRAPERR("initialization isn't finished \n");
- return E_PWR_NOT_INIT_DONE;
- }
- /* if last read command timeout,clear vldclr bit
- *read command state machine:FSM_REQ-->wfdle-->WFVLDCLR;write:FSM_REQ-->idle */
- switch ( GET_WACS0_FSM( reg_rdata ) ) {
- case WACS_FSM_WFVLDCLR:
- WRAP_WR32(wacs_vldclr_register , 1);
- PWRAPERR("WACS_FSM = PMIC_WRAP_WACS_VLDCLR\n");
- break;
- case WACS_FSM_WFDLE:
- PWRAPERR("WACS_FSM = WACS_FSM_WFDLE\n");
- break;
- case WACS_FSM_REQ:
- PWRAPERR("WACS_FSM = WACS_FSM_REQ\n");
- break;
- default:
- break;
- }
- } while ( fp(reg_rdata)); /*IDLE State*/
- if (read_reg)
- *read_reg = reg_rdata;
- return 0;
- }
- static inline U32 wait_for_state_ready(loop_condition_fp fp,U32 timeout_us,U32 wacs_register,U32 *read_reg)
- {
- U64 start_time_ns=0, timeout_ns=0;
- U32 reg_rdata;
- start_time_ns = _pwrap_get_current_time();
- timeout_ns = _pwrap_time2ns(timeout_us);
- do {
- if (_pwrap_timeout_ns(start_time_ns, timeout_ns)) {
- PWRAPERR("timeout when waiting for idle\n");
- pwrap_dump_ap_register();
- return E_PWR_WAIT_IDLE_TIMEOUT;
- }
- reg_rdata = WRAP_RD32(wacs_register);
- if ( GET_INIT_DONE0( reg_rdata ) != WACS_INIT_DONE) {
- PWRAPERR("initialization isn't finished \n");
- return E_PWR_NOT_INIT_DONE;
- }
- } while ( fp(reg_rdata)); /*IDLE State */
- if (read_reg)
- *read_reg = reg_rdata;
- return 0;
- }
- /*********************** external API for pmic_wrap user ************************/
- S32 pwrap_read( U32 adr, U32 *rdata )
- {
- return pwrap_wacs2(0,adr,0,rdata);
- }
- S32 pwrap_write( U32 adr, U32 wdata )
- {
- return pwrap_wacs2(1,adr,wdata,0);
- }
- /******************************************************
- * Function : pwrap_wacs2()
- * Description :
- * Parameter :
- * Return :
- ******************************************************/
- S32 pwrap_wacs2( U32 write, U32 adr, U32 wdata, U32 *rdata )
- {
- U32 reg_rdata=0;
- U32 wacs_write=0;
- U32 wacs_adr=0;
- U32 wacs_cmd=0;
- U32 return_value=0;
- /* Check argument validation */
- if ( (write & ~(0x1)) != 0) return E_PWR_INVALID_RW;
- if ( (adr & ~(0xffff)) != 0) return E_PWR_INVALID_ADDR;
- if ( (wdata & ~(0xffff)) != 0) return E_PWR_INVALID_WDAT;
- /* Check IDLE & INIT_DONE in advance */
- return_value = wait_for_state_idle(wait_for_fsm_idle,TIMEOUT_WAIT_IDLE,PMIC_WRAP_WACS2_RDATA,PMIC_WRAP_WACS2_VLDCLR,0);
- if ( return_value != 0 ) {
- PWRAPERR("wait_for_fsm_idle fail,return_value=%d\n",return_value);
- goto FAIL;
- }
- wacs_write = write << 31;
- wacs_adr = (adr >> 1) << 16;
- wacs_cmd = wacs_write | wacs_adr | wdata;
- WRAP_WR32(PMIC_WRAP_WACS2_CMD,wacs_cmd);
- if ( write == 0 ) {
- if (NULL == rdata) {
- PWRAPERR("rdata is a NULL pointer\n");
- return_value= E_PWR_INVALID_ARG;
- goto FAIL;
- }
- return_value = wait_for_state_ready(wait_for_fsm_vldclr,TIMEOUT_READ,PMIC_WRAP_WACS2_RDATA,®_rdata);
- if ( return_value != 0 ) {
- PWRAPERR("wait_for_fsm_vldclr fail,return_value=%d\n",return_value);
- return_value+=1;
- goto FAIL;
- }
- *rdata = GET_WACS0_RDATA( reg_rdata );
- WRAP_WR32(PMIC_WRAP_WACS2_VLDCLR , 1);
- }
- FAIL:
- if ( return_value != 0 ) {
- PWRAPERR("pwrap_wacs2 fail,return_value=%d\n",return_value);
- PWRAPERR("timeout:BUG_ON here\n");
- }
- return return_value;
- }
- /*********************internal API for pwrap_init***************************/
- /**********************************
- * Function : _pwrap_wacs2_nochk()
- * Description :
- * Parameter :
- * Return :
- ***********************************/
- static S32 pwrap_read_nochk( U32 adr, U32 *rdata )
- {
- return _pwrap_wacs2_nochk( 0, adr, 0, rdata );
- }
- static S32 pwrap_write_nochk( U32 adr, U32 wdata )
- {
- return _pwrap_wacs2_nochk( 1, adr,wdata,0 );
- }
- static S32 _pwrap_wacs2_nochk( U32 write, U32 adr, U32 wdata, U32 *rdata )
- {
- U32 reg_rdata=0x0;
- U32 wacs_write=0x0;
- U32 wacs_adr=0x0;
- U32 wacs_cmd=0x0;
- U32 return_value=0x0;
- /* Check argument validation */
- if ( (write & ~(0x1)) != 0) return E_PWR_INVALID_RW;
- if ( (adr & ~(0xffff)) != 0) return E_PWR_INVALID_ADDR;
- if ( (wdata & ~(0xffff)) != 0) return E_PWR_INVALID_WDAT;
- /* Check IDLE */
- return_value=wait_for_state_ready_init(wait_for_fsm_idle,TIMEOUT_WAIT_IDLE,PMIC_WRAP_WACS2_RDATA,0);
- if ( return_value != 0) {
- PWRAPERR("_pwrap_wacs2_nochk write command fail,return_value=%x\n", return_value);
- return return_value;
- }
- wacs_write = write << 31;
- wacs_adr = (adr >> 1) << 16;
- wacs_cmd= wacs_write | wacs_adr | wdata;
- WRAP_WR32(PMIC_WRAP_WACS2_CMD,wacs_cmd);
- if ( write == 0 ) {
- if (NULL == rdata) {
- PWRAPERR("rdata is a NULL pointer\n");
- return_value= E_PWR_INVALID_ARG;
- return return_value;
- }
- return_value=wait_for_state_ready_init(wait_for_fsm_vldclr,TIMEOUT_READ,PMIC_WRAP_WACS2_RDATA,®_rdata);
- if ( return_value != 0 ) {
- PWRAPERR("wait_for_fsm_vldclr fail,return_value=%d\n",return_value);
- return_value+=1;
- return return_value;
- }
- *rdata = GET_WACS0_RDATA(reg_rdata);
- WRAP_WR32(PMIC_WRAP_WACS2_VLDCLR , 1);
- }
- return 0;
- }
- /************************************************
- * Function : _pwrap_init_dio()
- * Description :call it in pwrap_init,mustn't check init done
- * Parameter :
- * Return :
- ************************************************/
- static S32 _pwrap_init_dio( U32 dio_en )
- {
- U32 arb_en_backup=0x0;
- /* U32 rdata=0x0; */
- U32 return_value=0;
- arb_en_backup = WRAP_RD32(PMIC_WRAP_HIPRIO_ARB_EN);
- WRAP_WR32(PMIC_WRAP_HIPRIO_ARB_EN , WACS2);
- #ifdef SLV_6351
- pwrap_write_nochk(MT6351_DEW_DIO_EN, (dio_en));
- #endif
- /* Check IDLE & INIT_DONE in advance */
- return_value=wait_for_state_ready_init(wait_for_idle_and_sync,TIMEOUT_WAIT_IDLE,PMIC_WRAP_WACS2_RDATA,0);
- if ( return_value != 0 ) {
- PWRAPERR("_pwrap_init_dio fail,return_value=%x\n", return_value);
- return return_value;
- }
- /* enable AP DIO mode */
- WRAP_WR32(PMIC_WRAP_DIO_EN , dio_en);
- /* Read Test */
- /* #ifdef SLV_6351
- pwrap_read_nochk(MT6351_DEW_READ_TEST, &rdata);
- if ( rdata != MT6351_DEFAULT_VALUE_READ_TEST ) {
- PWRAPERR("[Dio_mode][Read Test] fail,dio_en = %x, READ_TEST rdata=%x, exp=%x\n", dio_en, rdata,MT6351_DEFAULT_VALUE_READ_TEST);
- return E_PWR_READ_TEST_FAIL;
- }
- #endif*/
- WRAP_WR32(PMIC_WRAP_HIPRIO_ARB_EN , arb_en_backup);
- return 0;
- }
- /***************************************************
- * Function : _pwrap_init_cipher()
- * Description :
- * Parameter :
- * Return :
- ****************************************************/
- static S32 _pwrap_init_cipher( void )
- {
- U32 arb_en_backup=0;
- U32 rdata=0;
- U32 return_value=0;
- U32 start_time_ns=0, timeout_ns=0;
- arb_en_backup = WRAP_RD32(PMIC_WRAP_HIPRIO_ARB_EN);
- WRAP_WR32(PMIC_WRAP_HIPRIO_ARB_EN ,WACS2);
- WRAP_WR32(PMIC_WRAP_CIPHER_SWRST , 1);
- WRAP_WR32(PMIC_WRAP_CIPHER_SWRST , 0);
- WRAP_WR32(PMIC_WRAP_CIPHER_KEY_SEL , 1);
- WRAP_WR32(PMIC_WRAP_CIPHER_IV_SEL , 2);
- WRAP_WR32(PMIC_WRAP_CIPHER_EN , 1);
- /* Config CIPHER @ PMIC */
- #ifdef SLV_6351
- pwrap_write_nochk(MT6351_DEW_CIPHER_SWRST, 0x1);
- pwrap_write_nochk(MT6351_DEW_CIPHER_SWRST, 0x0);
- pwrap_write_nochk(MT6351_DEW_CIPHER_KEY_SEL, 0x1);
- pwrap_write_nochk(MT6351_DEW_CIPHER_IV_SEL, 0x2);
- pwrap_write_nochk(MT6351_DEW_CIPHER_EN, 0x1);
- #endif
- /*wait for cipher data ready@AP */
- return_value=wait_for_state_ready_init(wait_for_cipher_ready,TIMEOUT_WAIT_IDLE,PMIC_WRAP_CIPHER_RDY,0);
- if ( return_value != 0 ) {
- PWRAPERR("wait for cipher data ready@AP fail,return_value=%x\n", return_value);
- return return_value;
- }
- PWRAPLOG("cipher data ready@AP\n");
- /* wait for cipher data ready@PMIC */
- #ifdef SLV_6351
- start_time_ns = _pwrap_get_current_time();
- timeout_ns = _pwrap_time2ns(0xFFFFFF);
- do {
- if (_pwrap_timeout_ns(start_time_ns, timeout_ns)) {
- PWRAPERR("wait for cipher data ready@PMIC\n");
- }
- pwrap_read_nochk(MT6351_DEW_CIPHER_RDY,&rdata);
- } while ( rdata != 0x1 ); /* cipher_ready */
- return_value = pwrap_write_nochk(MT6351_DEW_CIPHER_MODE, 0x1);
- if ( return_value != 0 ) {
- PWRAPERR("write MT6351_DEW_CIPHER_MODE fail,return_value=%x\n", return_value);
- return return_value;
- }
- #endif
- PWRAPLOG("cipher data ready@PMIC\n");
- /* wait for cipher mode idle */
- return_value=wait_for_state_ready_init(wait_for_idle_and_sync,TIMEOUT_WAIT_IDLE,PMIC_WRAP_WACS2_RDATA,0);
- if ( return_value != 0 ) {
- PWRAPERR("wait for cipher mode idle fail,return_value=%x\n", return_value);
- return return_value;
- }
- WRAP_WR32(PMIC_WRAP_CIPHER_MODE , 1);
- /* Read Test */
- #ifdef SLV_6351
- pwrap_read_nochk(MT6351_DEW_READ_TEST, &rdata);
- if ( rdata != MT6351_DEFAULT_VALUE_READ_TEST ) {
- PWRAPERR("_pwrap_init_cipher,read test error,error code=%x, rdata=%x\n", 1, rdata);
- return E_PWR_READ_TEST_FAIL;
- }
- #endif
- WRAP_WR32(PMIC_WRAP_HIPRIO_ARB_EN , arb_en_backup);
- return 0;
- }
- static void _pwrap_adc_set()
- {
- /*pwrap_write_nochk(MT6351_DEW_CRC_EN, 0x1);*/
- WRAP_WR32(PMIC_WRAP_SIG_ADR, MT6351_DEW_CRC_VAL);
- WRAP_WR32(PMIC_WRAP_STAUPD_GRPEN, 0x75);
- /*WRAP_WR32(PMIC_WRAP_CRC_EN, 0x1);*/
- WRAP_WR32(PMIC_WRAP_EINT_STA0_ADR, MT6351_INT_STA);
- WRAP_WR32(PMIC_WRAP_ADC_CMD_ADDR, MT6351_AUXADC_RQST1_SET);
- WRAP_WR32(PMIC_WRAP_PWRAP_ADC_CMD, 0x0100);
- WRAP_WR32(PMIC_WRAP_ADC_RDATA_ADDR, MT6351_AUXADC_ADC16);
- WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR_LATEST, MT6351_AUXADC_ADC32);
- WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR_WP, MT6351_AUXADC_MDBG_1);
- WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR0, MT6351_AUXADC_BUF0);
- WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR1, MT6351_AUXADC_BUF1);
- WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR2, MT6351_AUXADC_BUF2);
- WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR3, MT6351_AUXADC_BUF3);
- WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR4, MT6351_AUXADC_BUF4);
- WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR5, MT6351_AUXADC_BUF5);
- WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR6, MT6351_AUXADC_BUF6);
- WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR7, MT6351_AUXADC_BUF7);
- WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR8, MT6351_AUXADC_BUF8);
- WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR9, MT6351_AUXADC_BUF9);
- WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR10, MT6351_AUXADC_BUF10);
- WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR11, MT6351_AUXADC_BUF11);
- WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR12, MT6351_AUXADC_BUF12);
- WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR13, MT6351_AUXADC_BUF13);
- WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR14, MT6351_AUXADC_BUF14);
- WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR15, MT6351_AUXADC_BUF15);
- WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR16, MT6351_AUXADC_BUF16);
- WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR17, MT6351_AUXADC_BUF17);
- WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR18, MT6351_AUXADC_BUF18);
- WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR19, MT6351_AUXADC_BUF19);
- WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR20, MT6351_AUXADC_BUF20);
- WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR21, MT6351_AUXADC_BUF21);
- WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR22, MT6351_AUXADC_BUF22);
- WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR23, MT6351_AUXADC_BUF23);
- WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR24, MT6351_AUXADC_BUF24);
- WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR25, MT6351_AUXADC_BUF25);
- WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR26, MT6351_AUXADC_BUF26);
- WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR27, MT6351_AUXADC_BUF27);
- WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR28, MT6351_AUXADC_BUF28);
- WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR29, MT6351_AUXADC_BUF29);
- WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR30, MT6351_AUXADC_BUF30);
- WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR31, MT6351_AUXADC_BUF31);
- return;
- }
- static void _pwrap_starve_set()
- {
- WRAP_WR32(PMIC_WRAP_HARB_HPRIO, 0x0007);
- WRAP_WR32(PMIC_WRAP_STARV_COUNTER_0, 0x0402);
- WRAP_WR32(PMIC_WRAP_STARV_COUNTER_1, 0x0402);
- WRAP_WR32(PMIC_WRAP_STARV_COUNTER_2, 0x0403);
- WRAP_WR32(PMIC_WRAP_STARV_COUNTER_3, 0x0414);
- WRAP_WR32(PMIC_WRAP_STARV_COUNTER_4, 0x0420);
- WRAP_WR32(PMIC_WRAP_STARV_COUNTER_5, 0x0420);
- WRAP_WR32(PMIC_WRAP_STARV_COUNTER_6, 0x0420);
- WRAP_WR32(PMIC_WRAP_STARV_COUNTER_7, 0x0428);
- WRAP_WR32(PMIC_WRAP_STARV_COUNTER_8, 0x0428);
- WRAP_WR32(PMIC_WRAP_STARV_COUNTER_9, 0x0417);
- WRAP_WR32(PMIC_WRAP_STARV_COUNTER_10, 0x0563);
- WRAP_WR32(PMIC_WRAP_STARV_COUNTER_11, 0x047C);
- WRAP_WR32(PMIC_WRAP_STARV_COUNTER_12, 0x0740);
- return;
- }
- static void _pwrap_enable()
- {
- WRAP_WR32(PMIC_WRAP_HIPRIO_ARB_EN, 0x01fff);
- WRAP_WR32(PMIC_WRAP_WACS0_EN, 0x1);
- WRAP_WR32(PMIC_WRAP_WACS1_EN, 0x1);
- WRAP_WR32(PMIC_WRAP_WACS3_EN, 0x1);
- WRAP_WR32(PMIC_WRAP_STAUPD_PRD, 0x5);
- WRAP_WR32(PMIC_WRAP_WDT_UNIT, 0xf);
- WRAP_WR32(PMIC_WRAP_WDT_SRC_EN, 0xffffffff);
- WRAP_WR32(PMIC_WRAP_TIMER_EN, 0x1);
- WRAP_WR32(PMIC_WRAP_INT0_EN, 0xfffffffd);
- WRAP_WR32(PMIC_WRAP_INT1_EN, 0x0001ffff);
- return;
- }
- /************************************************
- * Function : _pwrap_init_sistrobe()
- * scription : Initialize SI_CK_CON and SIDLY
- * Parameter :
- * Return :
- ************************************************/
- static S32 _pwrap_init_sistrobe( void )
- {
- U32 arb_en_backup=0;
- U32 rdata=0;
- S32 ind=0,sidly=0;
- U32 result_faulty=0;
- U64 result = 0, inds = 0, indf = 0, tmp1 = 0, tmp2 = 0;
- S32 leading_one = 0;
- S32 tailing_one = 0;
- S32 i = 0, fail_cnt = 0;
- U32 test_data[30] = {0x6996,0x9669,0x6996,0x9669,0x6996,0x9669,0x6996,0x9669,0x6996,0x9669,
- 0x5AA5,0xA55A,0x5AA5,0xA55A,0x5AA5,0xA55A,0x5AA5,0xA55A,0x5AA5,0xA55A,
- 0x1B27,0x1B27,0x1B27,0x1B27,0x1B27,0x1B27,0x1B27,0x1B27,0x1B27,0x1B27
- };
- arb_en_backup = WRAP_RD32(PMIC_WRAP_HIPRIO_ARB_EN);
- WRAP_WR32(PMIC_WRAP_HIPRIO_ARB_EN, WACS2); /* only WACS2 */
- /* --------------------------------------------------------------------- */
- /* Scan all possible input strobe by READ_TEST */
- /* --------------------------------------------------------------------- */
- for (ind = 0; ind < 24; ind++) { /* 24 sampling clock edge */
- WRAP_WR32(PMIC_WRAP_SI_CK_CON , (ind >> 2) & 0x7);
- WRAP_WR32(PMIC_WRAP_SIDLY ,0x3 - (ind & 0x3));
- #ifdef SLV_6351
- /* _pwrap_wacs2_nochk(0, MT6351_DEW_READ_TEST, 0, &rdata);
- if ( rdata == MT6351_DEFAULT_VALUE_READ_TEST ) {
- PWRAPERR("_pwrap_init_sistrobe [Read Test of MT6351] pass,index=%d rdata=%x\n",ind, rdata);
- result |= (0x1 << ind);
- } else {
- PWRAPERR("_pwrap_init_sistrobe [Read Test of MT6351] tuning,index=%d rdata=%x\n",ind, rdata);
- } */
- fail_cnt = 0;
- for (i = 0; i < 30; i++) {
- _pwrap_wacs2_nochk(1, MT6351_DEW_WRITE_TEST, test_data[i], &rdata);
- _pwrap_wacs2_nochk(0, MT6351_DEW_WRITE_TEST, 0, &rdata);
- if (rdata != test_data[i]) {
- fail_cnt++;
- PWRAPLOG("_pwrap_init_sistrobe [Read Test of MT6351] tuning,index=%d rdata=%x\n",ind, rdata);
- break;
- } else
- PWRAPLOG("_pwrap_init_sistrobe [Read Test of MT6351] pass,index=%d rdata=%x\n",ind, rdata);
- }
- if (fail_cnt == 0)
- result |= (0x1 << ind);
- #endif
- }
- /* --------------------------------------------------------------------- */
- /* Locate the leading one and trailing one of PMIC 1/2 */
- /* --------------------------------------------------------------------- */
- for ( ind=23 ; ind>=0 ; ind-- ) {
- if (result & (0x1 << ind))
- break;
- }
- leading_one = ind;
- for ( ind=0 ; ind<24 ; ind++ ) {
- if (result & (0x1 << ind))
- break;
- }
- tailing_one = ind;
- /* --------------------------------------------------------------------- */
- /* Check the continuity of pass range */
- /* --------------------------------------------------------------------- */
- tmp1 = (0x1 << (leading_one + 1)) - 1;
- tmp2 = (0x1 << tailing_one) - 1;
- if ((tmp1 - tmp2) != result) {
- PWRAPERR("_pwrap_init_sistrobe Fail, result = %llx, leading_one:%d, tailing_one:%d\n",result, leading_one, tailing_one);
- result_faulty = 0x1;
- }
- /* --------------------------------------------------------------------- */
- /* Config SICK and SIDLY to the middle point of pass range */
- /* --------------------------------------------------------------------- */
- if ( result_faulty == 0 ) {
- ind = (leading_one + tailing_one) / 2;
- WRAP_WR32(PMIC_WRAP_SI_CK_CON , (ind >> 2) & 0x7);
- sidly = 0x3 - (ind & 0x3);
- if (sidly != 0)
- sidly--;
- WRAP_WR32(PMIC_WRAP_SIDLY , sidly);
- /* --------------------------------------------------------------------- */
- /* Restore */
- /* --------------------------------------------------------------------- */
- #ifdef SLV_6351
- pwrap_read_nochk(MT6351_DEW_READ_TEST, &rdata);
- if ( rdata != MT6351_DEFAULT_VALUE_READ_TEST ) {
- PWRAPERR("[init_sistrobe][Read Test] fail,READ_TEST rdata=%x, exp=%x\n",rdata,MT6351_DEFAULT_VALUE_READ_TEST);
- return E_PWR_READ_TEST_FAIL;
- }
- #endif
- WRAP_WR32(PMIC_WRAP_HIPRIO_ARB_EN , arb_en_backup);
- return 0;
- } else {
- PWRAPERR("_pwrap_init_sistrobe Fail,result_faulty=%x\n", result_faulty);
- return result_faulty;
- }
- }
- /******************************************************
- * Function : _pwrap_reset_spislv()
- * Description :
- * Parameter :
- * Return :
- ******************************************************/
- static S32 _pwrap_reset_spislv( void )
- {
- U32 ret=0;
- U32 return_value=0;
- WRAP_WR32(PMIC_WRAP_HIPRIO_ARB_EN , DISABLE_ALL);
- WRAP_WR32(PMIC_WRAP_WRAP_EN , DISABLE);
- WRAP_WR32(PMIC_WRAP_MUX_SEL , MANUAL_MODE);
- WRAP_WR32(PMIC_WRAP_MAN_EN ,ENABLE);
- WRAP_WR32(PMIC_WRAP_DIO_EN ,DISABLE);
- WRAP_WR32(PMIC_WRAP_MAN_CMD , (OP_WR << 13) | (OP_CSL << 8));
- WRAP_WR32(PMIC_WRAP_MAN_CMD , (OP_WR << 13) | (OP_OUTS << 8));
- WRAP_WR32(PMIC_WRAP_MAN_CMD , (OP_WR << 13) | (OP_CSH << 8));
- WRAP_WR32(PMIC_WRAP_MAN_CMD , (OP_WR << 13) | (OP_OUTS << 8));
- WRAP_WR32(PMIC_WRAP_MAN_CMD , (OP_WR << 13) | (OP_OUTS << 8));
- WRAP_WR32(PMIC_WRAP_MAN_CMD , (OP_WR << 13) | (OP_OUTS << 8));
- WRAP_WR32(PMIC_WRAP_MAN_CMD , (OP_WR << 13) | (OP_OUTS << 8));
- return_value=wait_for_state_ready_init(wait_for_sync,TIMEOUT_WAIT_IDLE,PMIC_WRAP_WACS2_RDATA,0);
- if ( return_value!=0 ) {
- PWRAPERR("_pwrap_reset_spislv fail,return_value=%x\n", return_value);
- ret = E_PWR_TIMEOUT;
- goto timeout;
- }
- WRAP_WR32(PMIC_WRAP_MAN_EN ,DISABLE);
- WRAP_WR32(PMIC_WRAP_MUX_SEL ,WRAPPER_MODE);
- timeout:
- WRAP_WR32(PMIC_WRAP_MAN_EN ,DISABLE);
- WRAP_WR32(PMIC_WRAP_MUX_SEL ,WRAPPER_MODE);
- return ret;
- }
- static void __pwrap_soft_reset(void)
- {
- PWRAPLOG("start reset wrapper\n");
- WRAP_WR32(INFRA_GLOBALCON_RST0,0x1);
- WRAP_WR32(INFRA_GLOBALCON_RST1,0x1);
- return;
- }
- static void __pwrap_spi_clk_set(void)
- {
- WRAP_WR32(CLK_CFG_5_CLR,CLK_SPI_CK_26M);
- /*sys_ck cg enable*/
- WRAP_WR32(MODULE_SW_CG_0_SET,0x0000000F);
- WRAP_WR32(MODULE_SW_CG_0_CLR,0x0000000F);
- return;
- }
- static S32 _pwrap_init_reg_clock( U32 regck_sel )
- {
- /* Set Dummy cycle 6351 (assume 18MHz) */
- #ifdef SLV_6351
- pwrap_write_nochk(MT6351_DEW_RDDMY_NO, 0x8);
- #endif
- WRAP_WR32(PMIC_WRAP_RDDMY ,0x8);
- /* Config SPI Waveform according to reg clk */
- if ( regck_sel == 1 ) {
- WRAP_WR32(PMIC_WRAP_CSHEXT_READ , 0x0);
- WRAP_WR32(PMIC_WRAP_CSHEXT_WRITE , 0x33);
- WRAP_WR32(PMIC_WRAP_CSLEXT_START , 0x0);
- WRAP_WR32(PMIC_WRAP_CSLEXT_END , 0x0);
- } else { /* Safe mode */
- WRAP_WR32(PMIC_WRAP_CSHEXT_WRITE , 0xff);
- WRAP_WR32(PMIC_WRAP_CSHEXT_READ , 0xff);
- WRAP_WR32(PMIC_WRAP_CSLEXT_START , 0xf);
- WRAP_WR32(PMIC_WRAP_CSLEXT_END , 0xf);
- }
- return 0;
- }
- static U32 pwrap_read_test(void)
- {
- U32 rdata=0;
- U32 return_value=0;
- /* Read Test */
- #ifdef SLV_6351
- return_value=pwrap_read(MT6351_DEW_READ_TEST,&rdata);
- if ( rdata != MT6351_DEFAULT_VALUE_READ_TEST ) {
- PWRAPREG("Read Test fail,rdata=0x%x, exp=0x5aa5,return_value=0x%x\n", rdata,return_value);
- return E_PWR_READ_TEST_FAIL;
- } else {
- PWRAPREG("Read MT6351 Test pass,return_value=%d\n",return_value);
- }
- #endif
- return 0;
- }
- static U32 pwrap_write_test(void)
- {
- U32 rdata=0;
- U32 sub_return=0;
- U32 sub_return1=0;
- /* Write test using WACS2 */
- #ifdef SLV_6351
- sub_return = pwrap_write(MT6351_DEW_WRITE_TEST, MT6351_WRITE_TEST_VALUE);
- PWRAPREG("after MT6351 pwrap_write\n");
- sub_return1 = pwrap_read(MT6351_DEW_WRITE_TEST,&rdata);
- if (( rdata != MT6351_WRITE_TEST_VALUE )||( sub_return != 0 )||( sub_return1 != 0 )) {
- PWRAPREG("write test error,rdata=0x%x,exp=0xa55a,sub_return=0x%x,sub_return1=0x%x\n", rdata,sub_return,sub_return1);
- return E_PWR_INIT_WRITE_TEST;
- } else {
- PWRAPREG("write MT6351 Test pass\n");
- }
- #endif
- return 0;
- }
- static void pwrap_ut(U32 ut_test)
- {
- switch (ut_test) {
- case 1:
- pwrap_write_test();
- break;
- case 2:
- pwrap_read_test();
- break;
- default:
- PWRAPREG ( "default test.\n" );
- break;
- }
- return;
- }
- S32 pwrap_init ( void )
- {
- S32 sub_return=0;
- S32 sub_return1=0;
- U32 rdata=0x0;
- u32 cg_mask = 0;
- u32 backup = 0;
- PWRAPLOG("LK pwrap_init start!!!!!!!!!!!!! \n");
- /* toggle PMIC_WRAP and pwrap_spictl reset */
- __pwrap_soft_reset();
- PWRAPLOG("pwrap_init---- pwrap_soft_reset ok \n");
- /* Set SPI_CK_freq = 26MHz. It can marked when use fpga verify, because it has no address on Everest fpga */
- #ifdef MACH_FPGA
- #else
- __pwrap_spi_clk_set();
- #endif
- PWRAPLOG("pwrap_init---- pwrap_spi_clk_set ok \n");
- /* Enable DCM */
- WRAP_WR32(PMIC_WRAP_DCM_EN , 3);
- /* no debounce */
- WRAP_WR32(PMIC_WRAP_DCM_DBC_PRD ,DISABLE);
- PWRAPLOG("pwrap_init---- Enable DCM ok \n");
- /* Reset SPISLV */
- sub_return=_pwrap_reset_spislv();
- if ( sub_return != 0 ) {
- PWRAPERR("error,_pwrap_reset_spislv fail,sub_return=%x\n",sub_return);
- return E_PWR_INIT_RESET_SPI;
- }
- PWRAPLOG("pwrap_init---- pwrap_reset_spislv ok \n");
- /* Enable WACS2 */
- WRAP_WR32(PMIC_WRAP_WRAP_EN,ENABLE);
- WRAP_WR32(PMIC_WRAP_HIPRIO_ARB_EN,WACS2);
- WRAP_WR32(PMIC_WRAP_WACS2_EN,ENABLE);
- PWRAPLOG("pwrap_init---- Enable WACS2 ok \n");
- /* SPI Waveform Configuration. 0:safe mode, 1:18MHz */
- sub_return = _pwrap_init_reg_clock(1);
- if ( sub_return != 0) {
- PWRAPERR("error,_pwrap_init_reg_clock fail,sub_return=%x\n",sub_return);
- return E_PWR_INIT_REG_CLOCK;
- }
- PWRAPLOG("pwrap_init---- pwrap_init_reg_clock ok \n");
- /* Enable DIO mode */
- sub_return = _pwrap_init_dio(1);
- if ( sub_return != 0 ) {
- PWRAPERR("_pwrap_init_dio test error,error code=%x, sub_return=%x\n", 0x11, sub_return);
- return E_PWR_INIT_DIO;
- }
- PWRAPLOG("pwrap_init---- pwrap_init_dio ok \n");
- /* Input data calibration flow; */
- sub_return = _pwrap_init_sistrobe();
- if ( sub_return != 0 ) {
- PWRAPERR("error,DrvPWRAP_InitSiStrobe fail,sub_return=%x\n",sub_return);
- return E_PWR_INIT_SIDLY;
- }
- PWRAPLOG("pwrap_init---- pwrap_init_sistrobe ok \n");
- /* Enable Encryption */
- sub_return = _pwrap_init_cipher();
- if ( sub_return != 0 ) {
- PWRAPERR("Enable Encryption fail, return=%x\n", sub_return);
- return E_PWR_INIT_CIPHER;
- }
- PWRAPLOG("pwrap_init---- pwrap_init_cipher ok \n");
- /* Write test using WACS2. check Wtiet test default value */
- #ifdef SLV_6351
- sub_return = pwrap_write_nochk(MT6351_DEW_WRITE_TEST, MT6351_WRITE_TEST_VALUE);
- sub_return1 = pwrap_read_nochk(MT6351_DEW_WRITE_TEST, &rdata);
- if ( rdata != MT6351_WRITE_TEST_VALUE ) {
- PWRAPERR("write test error,rdata=0x%x,exp=0xa55a,sub_return=0x%x,sub_return1=0x%x\n", rdata,sub_return,sub_return1);
- return E_PWR_INIT_WRITE_TEST;
- }
- #endif
- PWRAPLOG("pwrap_init---- Write test using WACS2 ok \n");
- /* Status update function initialization
- * 1. Signature Checking using CRC (CRC 0 only)
- * 2. EINT update
- * 3. Read back Auxadc thermal data for GPD
- * 4. Read back Auxadc thermal data for LTE
- */
- _pwrap_adc_set();
- PWRAPLOG("pwrap_init---- pwrap_adc_se ok \n");
- /* PMIC WRAP priority adjust */
- WRAP_WR32(PMIC_WRAP_PRIORITY_USER_SEL_0, 0x6543C210);
- WRAP_WR32(PMIC_WRAP_PRIORITY_USER_SEL_1, 0xFEDBA987);
- WRAP_WR32(PMIC_WRAP_ARBITER_OUT_SEL_0, 0x87654210);
- WRAP_WR32(PMIC_WRAP_ARBITER_OUT_SEL_1, 0xFED3CBA9);
- /* PMIC_WRAP starvation setting */
- _pwrap_starve_set();
- PWRAPLOG("pwrap_init---- pwrap_starve_set ok \n");
- /* PMIC_WRAP enables */
- _pwrap_enable();
- PWRAPLOG("pwrap_init---- pwrap_enable ok \n");
- /* Initialization Done */
- WRAP_WR32(PMIC_WRAP_INIT_DONE0, 0x1);
- WRAP_WR32(PMIC_WRAP_INIT_DONE1, 0x1);
- WRAP_WR32(PMIC_WRAP_INIT_DONE2, 0x1);
- WRAP_WR32(PMIC_WRAP_INIT_DONE3, 0x1);
- PWRAPLOG("LK pwrap_init Done!!!!!!!!! \n");
- return 0;
- }
- /*-pwrap debug--------------------------------------------------------------------------*/
- void pwrap_dump_ap_register(void)
- {
- U32 i=0;
- U32 reg_addr=0;
- U32 reg_value=0;
- PWRAPREG("dump pwrap register\n");
- for (i=0; i<=PMIC_WRAP_REG_RANGE; i++) {
- reg_addr=(PMIC_WRAP_BASE+i*4);
- reg_value=WRAP_RD32(reg_addr);
- PWRAPREG("0x%x=0x%x\n",reg_addr,reg_value);
- }
- return;
- }
- S32 pwrap_init_lk ( void )
- {
- u32 pwrap_ret=0,i=0;
- PWRAPFUC();
- for (i=0; i<3; i++) {
- pwrap_ret = WRAP_RD32(PMIC_WRAP_INIT_DONE2);
- PWRAPLOG("is_pwrap_init_done %d \n", pwrap_ret);
- if (pwrap_ret != 0)
- return 0;
- pwrap_ret = pwrap_init();
- if (pwrap_ret!=0) {
- dprintf(CRITICAL,"[PMIC_WRAP]wrap_init fail,the return value=%x.\n",pwrap_ret);
- } else {
- dprintf(CRITICAL,"[PMIC_WRAP]wrap_init pass,the return value=%x.\n",pwrap_ret);
- break;
- }
- }
- return 0;
- }
- #endif /*endif PMIC_WRAP_NO_PMIC */
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