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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) 2019. 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.
- *
- * The following software/firmware and/or related documentation ("MediaTek
- * Software") have been modified by MediaTek Inc. All revisions are subject to
- * any receiver's applicable license agreements with MediaTek Inc.
- */
- /******************************************************************************
- * MTK PMIC Wrapper Driver
- *
- * Copyright 2018 MediaTek Co.,Ltd.
- *
- * DESCRIPTION:
- * This file provides API for other drivers to access PMIC registers
- *
- ******************************************************************************/
- #include <mt_pmic_wrap_init.h>
- #if (PMIC_WRAP_PRELOADER)
- #elif (PMIC_WRAP_LK)
- #elif (PMIC_WRAP_KERNEL)
- #elif (PMIC_WRAP_CTP)
- #include <gpio.h>
- #include <upmu_hw.h>
- #else
- ### Compile error, check SW ENV define
- #endif
- /************* marco ******************************************************/
- #if (PMIC_WRAP_PRELOADER)
- #elif (PMIC_WRAP_LK)
- #elif (PMIC_WRAP_KERNEL)
- #elif (PMIC_WRAP_SCP)
- #elif (PMIC_WRAP_CTP)
- #else
- ### Compile error, check SW ENV define
- #endif
- #ifdef PMIC_WRAP_NO_PMIC
- #if !(PMIC_WRAP_KERNEL)
- signed int pwrap_wacs2(unsigned int write, unsigned int adr,
- unsigned int wdata, unsigned int *rdata)
- {
- PWRAPLOG("PMIC_WRAP do Nothing.\n");
- return 0;
- }
- signed int pwrap_read(unsigned int adr, unsigned int *rdata)
- {
- PWRAPLOG("PMIC_WRAP do Nothing.\n");
- return 0;
- }
- signed int pwrap_write(unsigned int adr, unsigned int wdata)
- {
- PWRAPLOG("PMIC_WRAP do Nothing.\n");
- return 0;
- }
- #endif
- signed int pwrap_wacs2_read(unsigned int adr, unsigned int *rdata)
- {
- PWRAPLOG("PMIC_WRAP do Nothing.\n");
- return 0;
- }
- /* Provide PMIC write API */
- signed int pwrap_wacs2_write(unsigned int adr, unsigned int wdata)
- {
- PWRAPLOG("PMIC_WRAP do Nothing.\n");
- return 0;
- }
- signed int pwrap_read_nochk(unsigned int adr, unsigned int *rdata)
- {
- PWRAPLOG("PMIC_WRAP do Nothing.\n");
- return 0;
- }
- signed int pwrap_write_nochk(unsigned int adr, unsigned int wdata)
- {
- PWRAPLOG("PMIC_WRAP do Nothing.\n");
- return 0;
- }
- /*
- * pmic_wrap init, init wrap interface
- */
- signed int pwrap_init(void)
- {
- PWRAPLOG("PMIC_WRAP do Nothing.\n");
- return 0;
- }
- signed int pwrap_init_preloader(void)
- {
- PWRAPLOG("PMIC_WRAP do Nothing.\n");
- return 0;
- }
- signed int pwrap_init_lk(void)
- {
- PWRAPLOG("PMIC_WRAP do Nothing.\n");
- return 0;
- }
- #else /* #ifdef PMIC_WRAP_NO_PMIC */
- /*********************start ---internal API***********************************/
- static int _pwrap_timeout_ns(unsigned long long start_time_ns,
- unsigned long long timeout_time_ns);
- static unsigned long long _pwrap_get_current_time(void);
- static unsigned long long _pwrap_time2ns(unsigned long long time_us);
- static signed int _pwrap_wacs2_nochk(unsigned int write, unsigned int adr,
- unsigned int wdata, unsigned int *rdata);
- static signed int _pwrap_swinf_acc_nochk(unsigned int swinf_no, unsigned int cmd,
- unsigned int write, unsigned int pmifid, unsigned int slvid, unsigned int addr, unsigned int bytecnt,
- unsigned int wdata, unsigned int *rdata);
- static signed int _pwrap_swinf_acc(unsigned int swinf_no, unsigned int cmd,
- unsigned int write, unsigned int pmifid, unsigned int slvid, unsigned int addr, unsigned int bytecnt,
- unsigned int wdata, unsigned int *rdata);
- /*********************test API************************************************/
- static inline void pwrap_dump_ap_register(void);
- static unsigned int pwrap_write_test(void);
- static unsigned int pwrap_read_test(void);
- static signed int pwrap_reset_pattern(void);
- signed int pwrap_wacs2_read(unsigned int adr, unsigned int *rdata);
- signed int pwrap_wacs2_write(unsigned int adr, unsigned int wdata);
- static unsigned int si_sample_ctrl = 0;
- static struct pwrap_rc_info {
- unsigned int swinf_cmd;
- unsigned int other_inf_en;
- unsigned int spi_mode_ctrl;
- unsigned int sleep_protect_ctrl;
- unsigned int dcxo_cmd_adr0;
- unsigned int dcxo_cmd_wdata0;
- unsigned int dcxo_cmd_adr1;
- unsigned int dcxo_cmd_wdata1;
- unsigned int gps_auxadc_addr;
- unsigned int gps_auxadc_cmd;
- unsigned int gps_auxadc_rdata;
- };
- /************* end--internal API**********************************************/
- /*********************** external API for pmic_wrap user *********************/
- signed int pwrap_wacs2_read(unsigned int adr, unsigned int *rdata)
- {
- _pwrap_swinf_acc(PMIF_SPI_AP_SWINF_NO, DEFAULT_CMD, 0, PMIF_SPI_PMIFID,
- DEFAULT_SLVID, adr, DEFAULT_BYTECNT, 0x0, rdata);
- return 0;
- }
- /* Provide PMIC write API */
- signed int pwrap_wacs2_write(unsigned int adr, unsigned int wdata)
- {
- #ifdef CONFIG_MTK_TINYSYS_SSPM_SUPPORT
- unsigned int flag;
- flag = WRITE_CMD | (1 << WRITE_PMIC);
- pwrap_wacs2_ipi(adr, wdata, flag);
- #else
- _pwrap_swinf_acc(PMIF_SPI_AP_SWINF_NO, DEFAULT_CMD, 1, PMIF_SPI_PMIFID,
- DEFAULT_SLVID, adr, DEFAULT_BYTECNT, wdata, 0x0);
- #endif
- return 0;
- }
- signed int pwrap_read(unsigned int adr, unsigned int *rdata)
- {
- return _pwrap_swinf_acc(PMIF_SPI_AP_SWINF_NO, DEFAULT_CMD, 0, PMIF_SPI_PMIFID,
- DEFAULT_SLVID, adr, DEFAULT_BYTECNT, 0x0, rdata);
- }
- signed int pwrap_write(unsigned int adr, unsigned int wdata)
- {
- return _pwrap_swinf_acc(PMIF_SPI_AP_SWINF_NO, DEFAULT_CMD, 1, PMIF_SPI_PMIFID,
- DEFAULT_SLVID, adr, DEFAULT_BYTECNT, wdata, 0x0);
- }
- /******************************************************************************
- * wrapper timeout
- *****************************************************************************/
- /* use the same API name with kernel driver
- * however,the timeout API in uboot use tick instead of ns
- */
- #ifdef PWRAP_TIMEOUT
- static unsigned long long _pwrap_get_current_time(void)
- {
- return gpt4_get_current_tick();
- }
- static int _pwrap_timeout_ns(unsigned long long start_time_ns,
- unsigned long long timeout_time_ns)
- {
- return gpt4_timeout_tick(start_time_ns, timeout_time_ns);
- }
- static unsigned long long _pwrap_time2ns(unsigned long long time_us)
- {
- return gpt4_time2tick_us(time_us);
- }
- #else
- static unsigned long long _pwrap_get_current_time(void)
- {
- return 0;
- }
- static int _pwrap_timeout_ns(unsigned long long start_time_ns,
- unsigned long long elapse_time)
- {
- return 0;
- }
- static unsigned long long _pwrap_time2ns(unsigned long long time_us)
- {
- return 0;
- }
- #endif /* #ifdef PWRAP_TIMEOUT */
- /* ##################################################################### */
- /* define macro and inline function (for do while loop) */
- /* ##################################################################### */
- typedef unsigned int(*loop_condition_fp) (unsigned int); /* define a function pointer */
- static inline unsigned int wait_for_fsm_idle(unsigned int x)
- {
- return GET_SWINF_2_FSM(x) != WACS_FSM_IDLE;
- }
- static inline unsigned int wait_for_fsm_vldclr(unsigned int x)
- {
- return GET_SWINF_2_FSM(x) != WACS_FSM_WFVLDCLR;
- }
- static inline unsigned int wait_for_cipher_ready(unsigned int x)
- {
- return x != 3;
- }
- static inline unsigned int wait_for_stdupd_idle(unsigned int x)
- {
- return GET_STAUPD_FSM(x) != 0x0;
- }
- /**************used at _pwrap_wacs2_nochk*************************************/
- #if (PMIC_WRAP_KERNEL) || (PMIC_WRAP_CTP)
- static inline unsigned int wait_for_state_ready_init(loop_condition_fp fp,
- unsigned int timeout_us, void *wacs_register, unsigned int *read_reg)
- #else
- static inline unsigned int wait_for_state_ready_init(loop_condition_fp fp,
- unsigned int timeout_us, unsigned int *wacs_register,
- unsigned int *read_reg)
- #endif
- {
- unsigned long long start_time_ns = 0, timeout_ns = 0;
- unsigned int 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("ready_init timeout\n");
- pwrap_dump_ap_register();
- 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;
- }
- #if (PMIC_WRAP_KERNEL) || (PMIC_WRAP_CTP)
- static inline unsigned int wait_for_state_idle(loop_condition_fp fp,
- unsigned int timeout_us, void *wacs_register,
- void *wacs_vldclr_register, unsigned int *read_reg)
- #else
- static inline unsigned int wait_for_state_idle(loop_condition_fp fp,
- unsigned int timeout_us, unsigned int *wacs_register,
- unsigned int *wacs_vldclr_register, unsigned int *read_reg)
- #endif
- {
- unsigned long long start_time_ns = 0, timeout_ns = 0;
- unsigned int 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("state_idle timeout\n");
- pwrap_dump_ap_register();
- return E_PWR_WAIT_IDLE_TIMEOUT;
- }
- reg_rdata = WRAP_RD32(wacs_register);
- if (GET_SWINF_2_INIT_DONE(reg_rdata) != WACS_INIT_DONE) {
- PWRAPERR("init isn't finished\n");
- pwrap_dump_ap_register();
- return E_PWR_NOT_INIT_DONE;
- }
- switch (GET_SWINF_2_FSM(reg_rdata)) {
- case WACS_FSM_WFVLDCLR:
- WRAP_WR32(wacs_vldclr_register, 1);
- PWRAPERR("WACS_FSM = VLDCLR\n");
- break;
- case WACS_FSM_WFDLE:
- PWRAPERR("WACS_FSM = WFDLE\n");
- break;
- case WACS_FSM_REQ:
- PWRAPERR("WACS_FSM = REQ\n");
- break;
- default:
- break;
- }
- } while (fp(reg_rdata));
- if (read_reg)
- *read_reg = reg_rdata;
- return 0;
- }
- /**************used at pwrap_wacs2********************************************/
- #if (PMIC_WRAP_KERNEL) || (PMIC_WRAP_CTP)
- static inline unsigned int wait_for_state_ready(loop_condition_fp fp,
- unsigned int timeout_us, void *wacs_register, unsigned int *read_reg)
- #else
- static inline unsigned int wait_for_state_ready(loop_condition_fp fp,
- unsigned int timeout_us, unsigned int *wacs_register,
- unsigned int *read_reg)
- #endif
- {
- unsigned long long start_time_ns = 0, timeout_ns = 0;
- unsigned int 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("state_ready timeout\n");
- pwrap_dump_ap_register();
- return E_PWR_WAIT_IDLE_TIMEOUT;
- }
- reg_rdata = WRAP_RD32(wacs_register);
- if (GET_SWINF_2_INIT_DONE(reg_rdata) != WACS_INIT_DONE) {
- PWRAPERR("init isn't finished\n");
- pwrap_dump_ap_register();
- return E_PWR_NOT_INIT_DONE;
- }
- } while (fp(reg_rdata));
- if (read_reg)
- *read_reg = reg_rdata;
- return 0;
- }
- /*********************internal API for pwrap_init***************************/
- signed int pwrap_read_nochk(unsigned int adr, unsigned int *rdata)
- {
- return _pwrap_swinf_acc_nochk(PMIF_SPI_AP_SWINF_NO, DEFAULT_CMD, 0, PMIF_SPI_PMIFID,
- DEFAULT_SLVID, adr, DEFAULT_BYTECNT, 0x0, rdata);
- }
- signed int pwrap_write_nochk(unsigned int adr, unsigned int wdata)
- {
- return _pwrap_swinf_acc_nochk(PMIF_SPI_AP_SWINF_NO, DEFAULT_CMD, 1, PMIF_SPI_PMIFID,
- DEFAULT_SLVID, adr, DEFAULT_BYTECNT, wdata, 0x0);
- }
- signed int _pwrap_swinf_acc(unsigned int swinf_no, unsigned int cmd,
- unsigned int write, unsigned int pmifid, unsigned int slvid, unsigned int addr, unsigned int bytecnt,
- unsigned int wdata, unsigned int *rdata)
- {
- unsigned int reg_rdata = 0x0;
- /* Check argument validation */
- if ((swinf_no & ~(0x3)) != 0)
- return E_PWR_INVALID_SWINF;
- if ((cmd & ~(0x3)) != 0)
- return E_PWR_INVALID_CMD;
- if ((write & ~(0x1)) != 0)
- return E_PWR_INVALID_RW;
- if ((pmifid & ~(0x1)) != 0)
- return E_PWR_INVALID_PMIFID;
- if ((slvid & ~(0xf)) != 0)
- return E_PWR_INVALID_SLVID;
- if ((addr & ~(0xffff)) != 0)
- return E_PWR_INVALID_ADDR;
- if ((bytecnt & ~(0x1)) != 0)
- return E_PWR_INVALID_BYTECNT;
- if ((wdata & ~(0xffff)) != 0)
- return E_PWR_INVALID_WDAT;
- enter_critical_section();
- /* Check whether INIT_DONE is set */
- if (pmifid == 0)
- reg_rdata = WRAP_RD32(PMIF_SPI_PMIF_SWINF_0_STA + 0x40 * swinf_no);
- if (GET_SWINF_2_INIT_DONE(reg_rdata) != 0x1) {
- exit_critical_section();
- return E_PWR_NOT_INIT_DONE;
- }
- /* Wait for Software Interface FSM state to be IDLE */
- while (GET_SWINF_2_FSM(reg_rdata) != 0x0) {
- if (pmifid == 0)
- reg_rdata = WRAP_RD32(PMIF_SPI_PMIF_SWINF_0_STA + 0x40 * swinf_no);
- }
- /* Set the write data */
- if (write == 1) {
- if(pmifid == 0)
- WRAP_WR32(PMIF_SPI_PMIF_SWINF_0_WDATA_31_0 + 0x40 * swinf_no, wdata);
- }
- /* Send the command */
- if (pmifid == 0)
- WRAP_WR32(PMIF_SPI_PMIF_SWINF_0_ACC + 0x40 * swinf_no,
- (cmd << 30) | (write << 29) | (slvid << 24) | (bytecnt << 16) | addr);
- if (write == 0) {
- /* Wait for Software Interface FSM to be WFVLDCLR, read the data and clear the valid flag */
- do {
- if (pmifid == 0)
- reg_rdata = WRAP_RD32(PMIF_SPI_PMIF_SWINF_0_STA + 0x40 * swinf_no);
- } while (GET_SWINF_2_FSM(reg_rdata) != 0x6);
- if (pmifid == 0)
- *rdata = WRAP_RD32(PMIF_SPI_PMIF_SWINF_0_RDATA_31_0 + 0x40 * swinf_no);
- if (pmifid == 0)
- WRAP_WR32(PMIF_SPI_PMIF_SWINF_0_VLD_CLR + 0x40 * swinf_no, 0x1);
- }
- exit_critical_section();
- return 0;
- }
- static signed int _pwrap_swinf_acc_nochk(unsigned int swinf_no, unsigned int cmd,
- unsigned int write, unsigned int pmifid, unsigned int slvid, unsigned int addr, unsigned int bytecnt,
- unsigned int wdata, unsigned int *rdata)
- {
- unsigned int reg_rdata = 0x0;
- /* Check argument validation */
- if ((swinf_no & ~(0x3)) != 0)
- return E_PWR_INVALID_SWINF;
- if ((cmd & ~(0x3)) != 0)
- return E_PWR_INVALID_CMD;
- if ((write & ~(0x1)) != 0)
- return E_PWR_INVALID_RW;
- if ((pmifid & ~(0x1)) != 0)
- return E_PWR_INVALID_PMIFID;
- if ((slvid & ~(0xf)) != 0)
- return E_PWR_INVALID_SLVID;
- if ((addr & ~(0xffff)) != 0)
- return E_PWR_INVALID_ADDR;
- if ((bytecnt & ~(0x1)) != 0)
- return E_PWR_INVALID_BYTECNT;
- if ((wdata & ~(0xffff)) != 0)
- return E_PWR_INVALID_WDAT;
- enter_critical_section();
- /* Wait for Software Interface FSM state to be IDLE */
- do {
- if (pmifid == 0)
- reg_rdata = WRAP_RD32(PMIF_SPI_PMIF_SWINF_0_STA + 0x40 * swinf_no);
- } while (GET_SWINF_2_FSM(reg_rdata) != 0x0);
- /* Set the write data */
- if (write == 1) {
- if(pmifid == 0)
- WRAP_WR32(PMIF_SPI_PMIF_SWINF_0_WDATA_31_0 + 0x40 * swinf_no, wdata);
- }
- /* Send the command */
- if (pmifid == 0)
- WRAP_WR32(PMIF_SPI_PMIF_SWINF_0_ACC + 0x40 * swinf_no,
- (cmd << 30) | (write << 29) | (slvid << 24) | (bytecnt << 16) | addr);
- if (write == 0) {
- /* Wait for Software Interface FSM to be WFVLDCLR, read the data and clear the valid flag */
- do {
- if (pmifid == 0)
- reg_rdata = WRAP_RD32(PMIF_SPI_PMIF_SWINF_0_STA + 0x40 * swinf_no);
- } while (GET_SWINF_2_FSM(reg_rdata) != 0x6);
- if (pmifid == 0)
- *rdata = WRAP_RD32(PMIF_SPI_PMIF_SWINF_0_RDATA_31_0 + 0x40 * swinf_no);
- if (pmifid == 0)
- WRAP_WR32(PMIF_SPI_PMIF_SWINF_0_VLD_CLR + 0x40 * swinf_no, 0x1);
- }
- exit_critical_section();
- return 0;
- }
- static void __pwrap_soft_reset(void)
- {
- PWRAPLOG("start reset wrapper\n");
- WRAP_WR32(INFRA_GLOBALCON_RST2_SET, 0x1);
- WRAP_WR32(INFRA_GLOBALCON_RST2_CLR, 0x1);
- }
- static void __pwrap_spi_clk_set(void)
- {
- /* Turn off SYS, TMR and SPI clocks */
- WRAP_WR32(MODULE_SW_CG_0_SET, 0x0000000f);
- PWRAPLOG("pwrap_spictl reset ok\n");
- #ifndef MACH_FPGA
- /* Set ULPOSC clock to ULPOSC1/10 */
- WRAP_WR32(CLK_CFG_8_CLR, (0x1 << 15) | (0x1 << 12) | (0x7 << 8));
- WRAP_WR32(CLK_CFG_UPDATE1, 0x1 << 2);
- #endif
- /* Disable Fixed 26M Clock Control by SPM */
- PWRAPLOG("PMICW_CLOCK_CTRL:0x%x(before)\n", WRAP_RD32(PMICW_CLOCK_CTRL));
- WRAP_WR32(PMICW_CLOCK_CTRL_CLR, 0xf);
- PWRAPLOG("PMICW_CLOCK_CTRL:0x%x(after)\n", WRAP_RD32(PMICW_CLOCK_CTRL));
- /* Toggle PMIC_WRAP and pwrap_spictl reset */
- __pwrap_soft_reset();
- /* Turn on SYS, TMR and SPI clocks */
- WRAP_WR32(MODULE_SW_CG_0_CLR, 0x0000000f);
- PWRAPLOG("spi clk set ....\n");
- }
- static void _pwrap_InitStaUpd(void)
- {
- /* Signature mode */
- WRAP_WR32(PMIF_SPI_PMIF_SIG_MODE, 0x1);
- WRAP_WR32(PMIF_SPI_PMIF_PMIC_SIG_VAL, 0x83);
- WRAP_WR32(PMIF_SPI_PMIF_PMIC_SIG_ADDR, PMIC_DEW_CRC_VAL_ADDR);
- /* Setup PMIC EINT */
- WRAP_WR32(PMIF_SPI_PMIF_PMIC_EINT_STA_ADDR, PMIC_CPU_INT_STA_ADDR);
- WRAP_WR32(PMIF_SPI_PMIF_MD_AUXADC_RDATA_LATEST_ADDR, (PMIC_AUXADC_ADC_OUT_DCXO_BY_AP_ADDR << 16) + PMIC_AUXADC_ADC_OUT_MDRT_ADDR);
- WRAP_WR32(PMIF_SPI_PMIF_MD_AUXADC_RDATA_WP_ADDR, (PMIC_AUXADC_ADC_OUT_DCXO_BY_AP_ADDR << 16) + PMIC_AUXADC_ADC_OUT_MDRT_ADDR);
- WRAP_WR32(PMIF_SPI_PMIF_MD_AUXADC_RDATA_0_ADDR, (PMIC_AUXADC_ADC_OUT_DCXO_BY_AP_ADDR << 16) + PMIC_AUXADC_ADC_OUT_MDRT_ADDR);
- WRAP_WR32(PMIF_SPI_PMIF_MD_AUXADC_RDATA_1_ADDR, (PMIC_AUXADC_ADC_OUT_DCXO_BY_AP_ADDR << 16) + PMIC_AUXADC_ADC_OUT_MDRT_ADDR);
- WRAP_WR32(PMIF_SPI_PMIF_MD_AUXADC_RDATA_2_ADDR, (PMIC_AUXADC_ADC_OUT_DCXO_BY_AP_ADDR << 16) + PMIC_AUXADC_ADC_OUT_MDRT_ADDR);
- WRAP_WR32(PMIF_SPI_PMIF_MD_AUXADC_RDATA_3_ADDR, (PMIC_AUXADC_ADC_OUT_DCXO_BY_AP_ADDR << 16) + PMIC_AUXADC_ADC_OUT_MDRT_ADDR);
- WRAP_WR32(PMIF_SPI_PMIF_MD_AUXADC_RDATA_4_ADDR, (PMIC_AUXADC_ADC_OUT_DCXO_BY_AP_ADDR << 16) + PMIC_AUXADC_ADC_OUT_MDRT_ADDR);
- WRAP_WR32(PMIF_SPI_PMIF_MD_AUXADC_RDATA_5_ADDR, (PMIC_AUXADC_ADC_OUT_DCXO_BY_AP_ADDR << 16) + PMIC_AUXADC_ADC_OUT_MDRT_ADDR);
- WRAP_WR32(PMIF_SPI_PMIF_MD_AUXADC_RDATA_6_ADDR, (PMIC_AUXADC_ADC_OUT_DCXO_BY_AP_ADDR << 16) + PMIC_AUXADC_ADC_OUT_MDRT_ADDR);
- WRAP_WR32(PMIF_SPI_PMIF_MD_AUXADC_RDATA_7_ADDR, (PMIC_AUXADC_ADC_OUT_DCXO_BY_AP_ADDR << 16) + PMIC_AUXADC_ADC_OUT_MDRT_ADDR);
- WRAP_WR32(PMIF_SPI_PMIF_MD_AUXADC_RDATA_8_ADDR, (PMIC_AUXADC_ADC_OUT_DCXO_BY_AP_ADDR << 16) + PMIC_AUXADC_ADC_OUT_MDRT_ADDR);
- WRAP_WR32(PMIF_SPI_PMIF_MD_AUXADC_RDATA_9_ADDR, (PMIC_AUXADC_ADC_OUT_DCXO_BY_AP_ADDR << 16) + PMIC_AUXADC_ADC_OUT_MDRT_ADDR);
- WRAP_WR32(PMIF_SPI_PMIF_MD_AUXADC_RDATA_10_ADDR, (PMIC_AUXADC_ADC_OUT_DCXO_BY_AP_ADDR << 16) + PMIC_AUXADC_ADC_OUT_MDRT_ADDR);
- WRAP_WR32(PMIF_SPI_PMIF_MD_AUXADC_RDATA_11_ADDR, (PMIC_AUXADC_ADC_OUT_DCXO_BY_AP_ADDR << 16) + PMIC_AUXADC_ADC_OUT_MDRT_ADDR);
- WRAP_WR32(PMIF_SPI_PMIF_MD_AUXADC_RDATA_12_ADDR, (PMIC_AUXADC_ADC_OUT_DCXO_BY_AP_ADDR << 16) + PMIC_AUXADC_ADC_OUT_MDRT_ADDR);
- WRAP_WR32(PMIF_SPI_PMIF_MD_AUXADC_RDATA_13_ADDR, (PMIC_AUXADC_ADC_OUT_DCXO_BY_AP_ADDR << 16) + PMIC_AUXADC_ADC_OUT_MDRT_ADDR);
- WRAP_WR32(PMIF_SPI_PMIF_MD_AUXADC_RDATA_14_ADDR, (PMIC_AUXADC_ADC_OUT_DCXO_BY_AP_ADDR << 16) + PMIC_AUXADC_ADC_OUT_MDRT_ADDR);
- WRAP_WR32(PMIF_SPI_PMIF_MD_AUXADC_RDATA_15_ADDR, (PMIC_AUXADC_ADC_OUT_DCXO_BY_AP_ADDR << 16) + PMIC_AUXADC_ADC_OUT_MDRT_ADDR);
- WRAP_WR32(PMIF_SPI_PMIF_MD_AUXADC_RDATA_16_ADDR, (PMIC_AUXADC_ADC_OUT_DCXO_BY_AP_ADDR << 16) + PMIC_AUXADC_ADC_OUT_MDRT_ADDR);
- WRAP_WR32(PMIF_SPI_PMIF_MD_AUXADC_RDATA_17_ADDR, (PMIC_AUXADC_ADC_OUT_DCXO_BY_AP_ADDR << 16) + PMIC_AUXADC_ADC_OUT_MDRT_ADDR);
- WRAP_WR32(PMIF_SPI_PMIF_MD_AUXADC_RDATA_18_ADDR, (PMIC_AUXADC_ADC_OUT_DCXO_BY_AP_ADDR << 16) + PMIC_AUXADC_ADC_OUT_MDRT_ADDR);
- WRAP_WR32(PMIF_SPI_PMIF_MD_AUXADC_RDATA_19_ADDR, (PMIC_AUXADC_ADC_OUT_DCXO_BY_AP_ADDR << 16) + PMIC_AUXADC_ADC_OUT_MDRT_ADDR);
- WRAP_WR32(PMIF_SPI_PMIF_MD_AUXADC_RDATA_20_ADDR, (PMIC_AUXADC_ADC_OUT_DCXO_BY_AP_ADDR << 16) + PMIC_AUXADC_ADC_OUT_MDRT_ADDR);
- WRAP_WR32(PMIF_SPI_PMIF_MD_AUXADC_RDATA_21_ADDR, (PMIC_AUXADC_ADC_OUT_DCXO_BY_AP_ADDR << 16) + PMIC_AUXADC_ADC_OUT_MDRT_ADDR);
- WRAP_WR32(PMIF_SPI_PMIF_MD_AUXADC_RDATA_22_ADDR, (PMIC_AUXADC_ADC_OUT_DCXO_BY_AP_ADDR << 16) + PMIC_AUXADC_ADC_OUT_MDRT_ADDR);
- WRAP_WR32(PMIF_SPI_PMIF_MD_AUXADC_RDATA_23_ADDR, (PMIC_AUXADC_ADC_OUT_DCXO_BY_AP_ADDR << 16) + PMIC_AUXADC_ADC_OUT_MDRT_ADDR);
- WRAP_WR32(PMIF_SPI_PMIF_MD_AUXADC_RDATA_24_ADDR, (PMIC_AUXADC_ADC_OUT_DCXO_BY_AP_ADDR << 16) + PMIC_AUXADC_ADC_OUT_MDRT_ADDR);
- WRAP_WR32(PMIF_SPI_PMIF_MD_AUXADC_RDATA_25_ADDR, (PMIC_AUXADC_ADC_OUT_DCXO_BY_AP_ADDR << 16) + PMIC_AUXADC_ADC_OUT_MDRT_ADDR);
- WRAP_WR32(PMIF_SPI_PMIF_MD_AUXADC_RDATA_26_ADDR, (PMIC_AUXADC_ADC_OUT_DCXO_BY_AP_ADDR << 16) + PMIC_AUXADC_ADC_OUT_MDRT_ADDR);
- WRAP_WR32(PMIF_SPI_PMIF_MD_AUXADC_RDATA_27_ADDR, (PMIC_AUXADC_ADC_OUT_DCXO_BY_AP_ADDR << 16) + PMIC_AUXADC_ADC_OUT_MDRT_ADDR);
- WRAP_WR32(PMIF_SPI_PMIF_MD_AUXADC_RDATA_28_ADDR, (PMIC_AUXADC_ADC_OUT_DCXO_BY_AP_ADDR << 16) + PMIC_AUXADC_ADC_OUT_MDRT_ADDR);
- WRAP_WR32(PMIF_SPI_PMIF_MD_AUXADC_RDATA_29_ADDR, (PMIC_AUXADC_ADC_OUT_DCXO_BY_AP_ADDR << 16) + PMIC_AUXADC_ADC_OUT_MDRT_ADDR);
- WRAP_WR32(PMIF_SPI_PMIF_MD_AUXADC_RDATA_30_ADDR, (PMIC_AUXADC_ADC_OUT_DCXO_BY_AP_ADDR << 16) + PMIC_AUXADC_ADC_OUT_MDRT_ADDR);
- WRAP_WR32(PMIF_SPI_PMIF_MD_AUXADC_RDATA_31_ADDR, (PMIC_AUXADC_ADC_OUT_DCXO_BY_AP_ADDR << 16) + PMIC_AUXADC_ADC_OUT_MDRT_ADDR);
- /* Internal GPS AUXADC Interface */
- WRAP_WR32(PMIF_SPI_PMIF_INT_GPS_AUXADC_CMD_ADDR, (PMIC_AUXADC_RQST_DCXO_BY_GPS_ADDR << 16) + PMIC_AUXADC_RQST_CH7_BY_GPS_ADDR);
- WRAP_WR32(PMIF_SPI_PMIF_INT_GPS_AUXADC_CMD, (0x0040 << 16) + 0x0010);
- WRAP_WR32(PMIF_SPI_PMIF_INT_GPS_AUXADC_RDATA_ADDR, (PMIC_AUXADC_ADC_OUT_DCXO_BY_GPS_ADDR << 16) + PMIC_AUXADC_ADC_OUT_CH7_BY_GPS_ADDR);
- /* Status Update Period and Items */
- WRAP_WR32(PMIF_SPI_PMIF_STAUPD_CTRL, (0x5 << 4) | 0x5);
- }
- static unsigned int pwrap_read_test(void)
- {
- unsigned int rdata = 0;
- unsigned int return_value = 0;
- /* Read Test */
- PWRAPLOG("start pwrap_read_test\n");
- return_value = pwrap_wacs2_read(PMIC_DEW_READ_TEST_ADDR, &rdata);
- PWRAPLOG("rdata=0x%x\n", rdata);
- if (rdata != DEFAULT_VALUE_READ_TEST) {
- PWRAPERR("Error: r_rdata = 0x%x, exp = 0x5aa5\n", rdata);
- PWRAPERR("Error: return_value = 0x%x\n", return_value);
- return E_PWR_READ_TEST_FAIL;
- }
- else
- PWRAPLOG("Read Test pass, return_value = 0x%x\n", return_value);
- return 0;
- }
- static unsigned int pwrap_write_test(void)
- {
- unsigned int rdata = 0;
- unsigned int sub_return = 0;
- unsigned int sub_return1 = 0;
- /* Write test using WACS2 */
- PWRAPLOG("start pwrap_write_test\n");
- sub_return = pwrap_wacs2_write(PMIC_DEW_WRITE_TEST_ADDR,
- DEFAULT_VALUE_WRITE_TEST);
- PWRAPLOG("after pwrap_write\n");
- sub_return1 = pwrap_wacs2_read(PMIC_DEW_WRITE_TEST_ADDR, &rdata);
- PWRAPLOG("rdata=0x%x (read back)\n", rdata);
- if ((rdata != DEFAULT_VALUE_WRITE_TEST) ||
- (sub_return != 0) || (sub_return1 != 0)) {
- PWRAPERR("Error: w_rdata = 0x%x, exp = 0xa55a\n", rdata);
- PWRAPERR("Error: sub_return = 0x%x\n", sub_return);
- PWRAPERR("Error: sub_return1 = 0x%x\n", sub_return1);
- return E_PWR_INIT_WRITE_TEST;
- }
- else
- PWRAPLOG("Write Test pass\n");
- return 0;
- }
- static void pwrap_ut(unsigned int ut_test)
- {
- unsigned int sub_return = 0;
- switch (ut_test) {
- case 1:
- pwrap_write_test();
- break;
- case 2:
- pwrap_read_test();
- break;
- case 3:
- #ifdef CONFIG_MTK_TINYSYS_SSPM_SUPPORT
- pwrap_wacs2_ipi(0x10010000 + 0xD8, 0xffffffff, (WRITE_CMD | WRITE_PMIC_WRAP));
- break;
- #endif
- case 4:
- sub_return = pwrap_write_nochk(PMIC_DEW_WRITE_TEST_ADDR, 0x1234);
- sub_return = pwrap_write_nochk(PMIC_DEW_WRITE_TEST_ADDR, 0x4321);
- sub_return = pwrap_write_nochk(PMIC_DEW_WRITE_TEST_ADDR, 0xF0F0);
- if (sub_return != 0) {
- PWRAPERR("w_t_fail, sub_return=%x\n", sub_return);
- }
- break;
- default:
- PWRAPLOG("default test\n");
- break;
- }
- }
- /*-------------------pwrap debug---------------------*/
- static inline void pwrap_dump_ap_register(void)
- {
- unsigned int i = 0, offset = 0;
- #if (PMIC_WRAP_KERNEL) || (PMIC_WRAP_CTP)
- unsigned int *reg_addr;
- #else
- unsigned int reg_addr;
- #endif
- unsigned int reg_value = 0;
- PWRAPCRI("dump pmif reg\n");
- for (i = 0; i <= (PMIF_REG_RANGE/4); i++) {
- #if (PMIC_WRAP_KERNEL) || (PMIC_WRAP_CTP)
- reg_addr = (unsigned int *) (PMIF_SPI_BASE + i * 4);
- reg_value = WRAP_RD32(reg_addr);
- PWRAPCRI("addr:0x%p = 0x%x\n", reg_addr, reg_value);
- #else
- reg_addr = (PMIF_SPI_BASE + i * 4);
- reg_value = WRAP_RD32(reg_addr);
- PWRAPCRI("addr:0x%x = 0x%x\n", reg_addr, reg_value);
- #endif
- }
- for (i = 0; i <= 10; i++) {
- offset = 0xc00 + i * 4;
- #if (PMIC_WRAP_KERNEL) || (PMIC_WRAP_CTP)
- reg_addr = (unsigned int *) (PMIF_SPI_BASE + offset);
- reg_value = WRAP_RD32(reg_addr);
- PWRAPCRI("addr:0x%p = 0x%x\n", reg_addr, reg_value);
- #else
- reg_addr = (PMIF_SPI_BASE + offset);
- reg_value = WRAP_RD32(reg_addr);
- PWRAPCRI("addr:0x%x = 0x%x\n", reg_addr, reg_value);
- #endif
- }
- for (i = 0; i <= 10; i++) {
- offset = 0xc40 + i * 4;
- #if (PMIC_WRAP_KERNEL) || (PMIC_WRAP_CTP)
- reg_addr = (unsigned int *) (PMIF_SPI_BASE + offset);
- reg_value = WRAP_RD32(reg_addr);
- PWRAPCRI("addr:0x%p = 0x%x\n", reg_addr, reg_value);
- #else
- reg_addr = (PMIF_SPI_BASE + offset);
- reg_value = WRAP_RD32(reg_addr);
- PWRAPCRI("addr:0x%x = 0x%x\n", reg_addr, reg_value);
- #endif
- }
- for (i = 0; i <= 10; i++) {
- offset = 0xc80 + i * 4;
- #if (PMIC_WRAP_KERNEL) || (PMIC_WRAP_CTP)
- reg_addr = (unsigned int *) (PMIF_SPI_BASE + offset);
- reg_value = WRAP_RD32(reg_addr);
- PWRAPCRI("addr:0x%p = 0x%x\n", reg_addr, reg_value);
- #else
- reg_addr = (PMIF_SPI_BASE + offset);
- reg_value = WRAP_RD32(reg_addr);
- PWRAPCRI("addr:0x%x = 0x%x\n", reg_addr, reg_value);
- #endif
- }
- PWRAPCRI("dump pmicspi_mst reg\n");
- for (i = 0; i <= (PMICSPI_MST_REG_RANGE/4); i++) {
- #if (PMIC_WRAP_KERNEL) || (PMIC_WRAP_CTP)
- reg_addr = (unsigned int *) (PMICSPI_MST_BASE + i * 4);
- reg_value = WRAP_RD32(reg_addr);
- PWRAPCRI("addr:0x%p = 0x%x\n", reg_addr, reg_value);
- #else
- reg_addr = (PMICSPI_MST_BASE + i * 4);
- reg_value = WRAP_RD32(reg_addr);
- PWRAPCRI("addr:0x%x = 0x%x\n", reg_addr, reg_value);
- #endif
- }
- }
- void pwrap_dump_all_register(void)
- {
- pwrap_dump_ap_register();
- }
- static int is_pwrap_init_done(void)
- {
- int ret = 0;
- ret = WRAP_RD32(PMIF_SPI_PMIF_INIT_DONE);
- PWRAPLOG("is_pwrap_init_done %d\n", ret);
- if ((ret & 0x1) == 1)
- return 0;
- return E_PWR_NOT_INIT_DONE;
- }
- signed int pwrap_init_lk(void)
- {
- PWRAPFUC();
- if (0 == is_pwrap_init_done()) {
- PWRAPLOG("wrap_init already init, do nothing\n");
- return 0;
- }
- return 0;
- }
- static signed int _pwrap_reset_spislv(void)
- {
- unsigned int rdata = 0;
- unsigned int pmicspi_mst_dio_en_backup = 0;
- WRAP_WR32(PMICSPI_MST_SPIWRAP_EN, 0x0);
- WRAP_WR32(PMICSPI_MST_SPIMUX_SEL, 0x1);
- WRAP_WR32(PMICSPI_MST_SPIMAN_EN, 0x1);
- pmicspi_mst_dio_en_backup = WRAP_RD32(PMICSPI_MST_DIO_EN);
- WRAP_WR32(PMICSPI_MST_DIO_EN, 0x0);
- WRAP_WR32(PMICSPI_MST_SPIMAN_ACC, (0x1 << 13) | (OP_CSL << 8));
- WRAP_WR32(PMICSPI_MST_SPIMAN_ACC, (0x1 << 13) | (OP_OUTS << 8)); //Reset the counter.
- WRAP_WR32(PMICSPI_MST_SPIMAN_ACC, (0x1 << 13) | (OP_CSH << 8));
- WRAP_WR32(PMICSPI_MST_SPIMAN_ACC, (0x1 << 13) | (OP_OUTS << 8));
- WRAP_WR32(PMICSPI_MST_SPIMAN_ACC, (0x1 << 13) | (OP_OUTS << 8));
- WRAP_WR32(PMICSPI_MST_SPIMAN_ACC, (0x1 << 13) | (OP_OUTS << 8));
- WRAP_WR32(PMICSPI_MST_SPIMAN_ACC, (0x1 << 13) | (OP_OUTS << 8));
- /* Wait for PMIC SPI Master to be idle */
- do {
- rdata = WRAP_RD32(PMICSPI_MST_OTHER_BUSY_STA_0);
- } while (GET_PMICSPI_BUSY(rdata) != 0x0);
- WRAP_WR32(PMICSPI_MST_SPIMAN_EN, 0x0);
- WRAP_WR32(PMICSPI_MST_SPIMUX_SEL, 0x0);
- WRAP_WR32(PMICSPI_MST_SPIWRAP_EN, 0x1);
- WRAP_WR32(PMICSPI_MST_DIO_EN, pmicspi_mst_dio_en_backup);
- return 0;
- }
- static signed int _pwrap_init_reg_clock_reset(unsigned int regck_sel)
- {
- unsigned int rdata;
- /* Configure SPI protocol */
- WRAP_WR32(PMICSPI_MST_EXT_CK_WRITE, 0x1);
- WRAP_WR32(PMICSPI_MST_EXT_CK_READ, 0x0);
- WRAP_WR32(PMICSPI_MST_CSHEXT_WRITE, 0x0);
- WRAP_WR32(PMICSPI_MST_CSHEXT_READ, 0x0);
- WRAP_WR32(PMICSPI_MST_CSLEXT_WRITE, 0x0);
- WRAP_WR32(PMICSPI_MST_CSLEXT_READ, 0x0100);
- /* Set Read Dummy Cycle Number (Slave Clock is 18MHz) */
- WRAP_WR32(PMICSPI_MST_RDDMY, 0x8);
- PWRAPLOG("Set Read Dummy Cycle ok\n");
- /* Wait for completion of sending the commands */
- do {
- rdata = WRAP_RD32(PMIF_SPI_PMIF_INF_BUSY_STA);
- } while ((rdata & (0x1 << PMIF_SPI_AP_SWINF_CHAN_NO)) != 0x0);
- do {
- rdata = WRAP_RD32(PMIF_SPI_PMIF_OTHER_BUSY_STA_0);
- } while (GET_CMDISSUE_BUSY(rdata) != 0x0);
- do {
- rdata = WRAP_RD32(PMICSPI_MST_OTHER_BUSY_STA_0);
- } while (GET_PMICSPI_BUSY(rdata) != 0x0);
- /* Enable DIO mode */
- WRAP_WR32(PMICSPI_MST_DIO_EN, 0x1);
- PWRAPLOG("_pwrap_init_dio ok\n");
- return 0;
- }
- static int _pwrap_lock_SPISLVReg(void)
- {
- pwrap_write_nochk(PMIC_SPISLV_KEY_ADDR, 0x0);
- return 0;
- }
- static int _pwrap_unlock_SPISLVReg(void)
- {
- pwrap_write_nochk(PMIC_SPISLV_KEY_ADDR, 0xbade);
- return 0;
- }
- static S32 _pwrap_init_sistrobe_reset(void)
- {
- WRAP_WR32(PMICSPI_MST_SI_SAMPLING_CTRL, si_sample_ctrl);
- return 0;
- }
- signed int PMICSPIMSTDrv_Reset(void)
- {
- signed int sub_return = 0;
- /* Reset SPI Slave */
- sub_return = _pwrap_reset_spislv();
- if (sub_return != 0) {
- PWRAPERR("reset_spislv fail, ret=%x\n", sub_return);
- return E_PWR_INIT_RESET_SPI;
- }
- PWRAPLOG("Reset SPISLV ok\n");
- /* Enable SPI Wrapper */
- WRAP_WR32(PMICSPI_MST_SPIWRAP_EN, 0x1);
- /* SPI Waveform Configuration. 0: Safe Mode, 1: SPISLV Clock is 18MHz */
- sub_return = _pwrap_init_reg_clock_reset(1);
- if (sub_return != 0) {
- PWRAPERR("_pwrap_init_reg_clock_reset fail, ret=%x\n", sub_return);
- return E_PWR_INIT_REG_CLOCK;
- }
- PWRAPLOG("_pwrap_init_reg_clock_reset ok\n");
- /* SPI Slave Configuration */
- PWRAPLOG("No need to init SPISLV\n");
- /* Input data calibration flow; */
- sub_return = _pwrap_init_sistrobe_reset();
- if (sub_return != 0) {
- PWRAPERR("InitSiStrobe fail, sub_return=%x\n", sub_return);
- return E_PWR_INIT_SIDLY;
- }
- PWRAPLOG("_pwrap_init_sistrobe_reset ok\n");
- /* Lock SPI Slave Registers */
- PWRAPLOG("No need to lock SPISLV\n");
- return 0;
- }
- static signed int _pwrap_reset_pattern(void)
- {
- signed int sub_return = 0;
- struct pwrap_rc_info info;
- PWRAPLOG("pwrap_init_reset start!!!!!!!!!!!!!\n");
- /* Backup PMIC Wrap key register before reset */
- si_sample_ctrl = WRAP_RD32(PMICSPI_MST_SI_SAMPLING_CTRL);
- info.swinf_cmd = WRAP_RD32(PMIF_SPI_PMIF_SWINF_0_ACC + 0x40 * PMIF_SPI_AP_SWINF_NO);
- info.other_inf_en = WRAP_RD32(PMIF_SPI_PMIF_OTHER_INF_EN);
- info.spi_mode_ctrl = WRAP_RD32(PMIF_SPI_PMIF_SPI_MODE_CTRL);
- info.sleep_protect_ctrl = WRAP_RD32(PMIF_SPI_PMIF_SLEEP_PROTECTION_CTRL);
- info.dcxo_cmd_adr0 = WRAP_RD32(PMIF_SPI_PMIF_DCXO_CMD_ADDR_0);
- info.dcxo_cmd_wdata0 = WRAP_RD32(PMIF_SPI_PMIF_DCXO_CMD_WDATA_0);
- info.dcxo_cmd_adr1 = WRAP_RD32(PMIF_SPI_PMIF_DCXO_CMD_ADDR_1);
- info.dcxo_cmd_wdata1 = WRAP_RD32(PMIF_SPI_PMIF_DCXO_CMD_WDATA_1);
- info.gps_auxadc_addr = WRAP_RD32(PMIF_SPI_PMIF_INT_GPS_AUXADC_CMD_ADDR);
- info.gps_auxadc_cmd = WRAP_RD32(PMIF_SPI_PMIF_INT_GPS_AUXADC_CMD);
- info.gps_auxadc_rdata = WRAP_RD32(PMIF_SPI_PMIF_INT_GPS_AUXADC_RDATA_ADDR);
- PWRAPLOG("Backup pwrap key register ok\n");
- __pwrap_spi_clk_set();
- PWRAPLOG("__pwrap_spi_clk_set ok\n");
- /* Enable SWINF for AP */
- WRAP_WR32(PMIF_SPI_PMIF_INF_EN, 0x1 << PMIF_SPI_AP_SWINF_CHAN_NO);
- /* Enable arbitration for SWINF for AP */
- WRAP_WR32(PMIF_SPI_PMIF_ARB_EN, 0x1 << PMIF_SPI_AP_SWINF_CHAN_NO);
- /* Enable PMIF_SPI Command Issue */
- WRAP_WR32(PMIF_SPI_PMIF_CMDISSUE_EN, 0x1);
- /* Initialize PMIC SPI Master */
- sub_return = PMICSPIMSTDrv_Reset();
- if (sub_return != 0) {
- PWRAPERR("PMICSPIMSTDrv_Reset Failed, sub_return = %x, exp = 0\n", sub_return);
- return sub_return;
- }
- /* Status update function initialization
- * 1. Signature Checking using CRC (CRC 0 only)
- * 2. EINT update
- * 3. Read back Auxadc thermal data for GPS
- */
- _pwrap_InitStaUpd();
- PWRAPLOG("_pwrap_InitStaUpd ok\n");
- /* Configure PMIF Timer */
- WRAP_WR32(PMIF_SPI_PMIF_TIMER_CTRL, 0x3);
- /* Enable interfaces and arbitration */
- WRAP_WR32(PMIF_SPI_PMIF_INF_EN, 0x307f | (0x1 << PMIF_SPI_MD_SWINF_CHAN_NO) |
- (0x1 << PMIF_SPI_AP_SECURE_SWINF_CHAN_NO) |
- (0x1 << PMIF_SPI_AP_SWINF_CHAN_NO));
- WRAP_WR32(PMIF_SPI_PMIF_ARB_EN, 0x707f | (0x1 << PMIF_SPI_MD_SWINF_CHAN_NO) |
- (0x1 << PMIF_SPI_AP_SECURE_SWINF_CHAN_NO) |
- (0x1 << PMIF_SPI_AP_SWINF_CHAN_NO));
- /* Set INIT_DONE */
- WRAP_WR32(PMIF_SPI_PMIF_INIT_DONE, 0x1);
- #if !(MACH_FPGA)
- /* Configure MD ADC Interface */
- udelay(100);
- PWRAPLOG("write MODEM_TEMP_SHARE_CTRL start\n");
- WRAP_WR32(MODEM_TEMP_SHARE_CTRL, 0xf0);
- PWRAPLOG("write MODEM_TEMP_SHARE_CTRL ok\n");
- PWRAPLOG("MODEM_TEMP_SHARE_CTRL:%x\n", WRAP_RD32(MODEM_TEMP_SHARE_CTRL));
- #endif
- /* Restore key register after reset */
- WRAP_WR32(PMIF_SPI_PMIF_SWINF_0_ACC + 0x40 * PMIF_SPI_AP_SWINF_NO, info.swinf_cmd);
- WRAP_WR32(PMIF_SPI_PMIF_DCXO_CMD_ADDR_0, info.dcxo_cmd_adr0);
- WRAP_WR32(PMIF_SPI_PMIF_DCXO_CMD_WDATA_0, info.dcxo_cmd_wdata0);
- WRAP_WR32(PMIF_SPI_PMIF_DCXO_CMD_ADDR_1, info.dcxo_cmd_adr1);
- WRAP_WR32(PMIF_SPI_PMIF_DCXO_CMD_WDATA_1, info.dcxo_cmd_wdata1);
- WRAP_WR32(PMIF_SPI_PMIF_INT_GPS_AUXADC_CMD_ADDR, info.gps_auxadc_addr);
- WRAP_WR32(PMIF_SPI_PMIF_INT_GPS_AUXADC_CMD, info.gps_auxadc_cmd);
- WRAP_WR32(PMIF_SPI_PMIF_INT_GPS_AUXADC_RDATA_ADDR, info.gps_auxadc_rdata);
- WRAP_WR32(PMIF_SPI_PMIF_SLEEP_PROTECTION_CTRL, info.sleep_protect_ctrl);
- WRAP_WR32(PMIF_SPI_PMIF_SPI_MODE_CTRL, info.spi_mode_ctrl);
- WRAP_WR32(PMIF_SPI_PMIF_OTHER_INF_EN, info.other_inf_en);
- PWRAPLOG("Restore pwrap key register ok\n");
- /* Write Test */
- sub_return = pwrap_write_test();
- if (sub_return != 0) {
- PWRAPERR("write test fail\n");
- return E_PWR_INIT_WRITE_TEST;
- }
- PWRAPLOG("pwrap_write_test ok\n");
- PWRAPLOG("pwrap_init_reset Done!!!!!!!!!\n");
- return 0;
- }
- static signed int pwrap_reset_pattern(void)
- {
- /* SPI & WRAP Reset Pattern */
- unsigned int ret;
- ret = _pwrap_reset_pattern();
- if (ret != 0) {
- PWRAPERR("_pwrap_reset_pattern fail, ret=%x\n", ret);
- return E_PWR_INIT_RESET_SPI;
- }
- return 0;
- }
- void pwrap_disable(void) {
- PWRAPLOG("pmic wrap disable\n");
- WRAP_WR32(PMICSPI_MST_SPIWRAP_EN, 0x0);
- udelay(10);
- }
- #endif /*endif PMIC_WRAP_NO_PMIC */
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