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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 <platform/mt_reg_base.h>
- #include <platform/mt_gpio.h>
- #include <platform/gpio_cfg.h>
- #include <debug.h>
- /******************************************************************************
- MACRO Definition
- ******************************************************************************/
- //#define GIO_SLFTEST
- #define GPIO_BRINGUP/* use status register rather than set/clr register */
- #define GPIO_DEVICE "mt-gpio"
- #define VERSION GPIO_DEVICE
- /*---------------------------------------------------------------------------*/
- #define GPIO_WR32(addr, data) DRV_WriteReg32(addr,data)
- #define GPIO_RD32(addr) DRV_Reg32(addr)
- #define GPIO_SW_SET_BITS(BIT,REG) GPIO_WR32(REG,GPIO_RD32(REG) | ((unsigned long)(BIT)))
- #define GPIO_SET_BITS(BIT,REG) ((*(volatile u32*)(REG)) = (u32)(BIT))
- #define GPIO_CLR_BITS(BIT,REG) ((*(volatile u32*)(REG)) &= ~((u32)(BIT)))
- /*---------------------------------------------------------------------------*/
- #define TRUE 1
- #define FALSE 0
- /*---------------------------------------------------------------------------*/
- /*---------------------------------------------------------------------------*/
- #define GPIOTAG "[GPIO] "
- #define GPIODBG(fmt, arg...) dprintf(CRITICAL, GPIOTAG "%s: " fmt, __FUNCTION__ ,##arg)
- #define GPIOERR(fmt, arg...) dprintf(CRITICAL, GPIOTAG "%s: " fmt, __FUNCTION__ ,##arg)
- #define GPIOVER(fmt, arg...) dprintf(CRITICAL, GPIOTAG "%s: " fmt, __FUNCTION__ ,##arg)
- /******************************************************************************
- Enumeration/Structure
- ******************************************************************************/
- #if (defined(MACH_FPGA) && !defined (FPGA_SIMULATION))
- S32 mt_set_gpio_dir(u32 pin, u32 dir)
- {
- return RSUCCESS;
- }
- S32 mt_get_gpio_dir(u32 pin)
- {
- return GPIO_DIR_UNSUPPORTED;
- }
- S32 mt_set_gpio_pull_enable(u32 pin, u32 enable)
- {
- return RSUCCESS;
- }
- S32 mt_get_gpio_pull_enable(u32 pin)
- {
- return GPIO_PULL_EN_UNSUPPORTED;
- }
- S32 mt_set_gpio_pull_select(u32 pin, u32 select)
- {
- return RSUCCESS;
- }
- S32 mt_get_gpio_pull_select(u32 pin)
- {
- return GPIO_PULL_UNSUPPORTED;
- }
- S32 mt_set_gpio_smt(u32 pin, u32 enable)
- {
- return RSUCCESS;
- }
- S32 mt_get_gpio_smt(u32 pin)
- {
- return GPIO_SMT_UNSUPPORTED;
- }
- S32 mt_set_gpio_ies(u32 pin, u32 enable)
- {
- return RSUCCESS;
- }
- S32 mt_get_gpio_ies(u32 pin)
- {
- return GPIO_IES_UNSUPPORTED;
- }
- S32 mt_set_gpio_out(u32 pin, u32 output)
- {
- return RSUCCESS;
- }
- S32 mt_get_gpio_out(u32 pin)
- {
- return GPIO_OUT_UNSUPPORTED;
- }
- S32 mt_get_gpio_in(u32 pin)
- {
- return GPIO_IN_UNSUPPORTED;
- }
- S32 mt_set_gpio_mode(u32 pin, u32 mode)
- {
- return RSUCCESS;
- }
- S32 mt_get_gpio_mode(u32 pin)
- {
- return GPIO_MODE_UNSUPPORTED;
- }
- S32 mt_set_gpio_drving(u32 pin, GPIO_DRV driving)
- {
- return RSUCCESS;
- }
- S32 mt_get_gpio_drving(u32 pin)
- {
- return RSUCCESS;
- }
- #else //else !(defined(MACH_FPGA) && !defined (FPGA_SIMULATION))
- typedef struct {
- S32 en_flag;
- } GPIO_PUPD_flag;
- GPIO_PUPD_flag gpio_pupd_en_flag[MT_GPIO_BASE_MAX] = {{ 0 }};
- struct mt_gpio_obj {
- GPIO_REGS *reg;
- };
- static struct mt_gpio_obj gpio_dat = {
- .reg = (GPIO_REGS *) (GPIO_BASE),
- };
- static struct mt_gpio_obj *gpio_obj = &gpio_dat;
- S32 mt_get_gpio_pull_enable_chip(u32 pin);
- S32 mt_get_gpio_pull_select_chip(u32 pin);
- S32 mt_set_gpio_pull_select_chip(u32 pin, u32 select);
- /*---------------------------------------------------------------------------*/
- S32 mt_set_gpio_dir_chip(u32 pin, u32 dir)
- {
- u32 bit;
- #ifdef GPIO_BRINGUP
- u32 reg;
- #else
- u32 pos;
- struct mt_gpio_obj *obj = gpio_obj;
- #endif
- if (pin >= MAX_GPIO_PIN)
- return -ERINVAL;
- if (dir >= GPIO_DIR_MAX)
- return -ERINVAL;
- bit = DIR_offset[pin].offset;
- #ifdef GPIO_BRINGUP
- reg = GPIO_RD32(DIR_addr[pin].addr);
- if (dir == GPIO_DIR_IN)
- reg &= (~(1 << bit));
- else
- reg |= (1 << bit);
- GPIO_WR32(DIR_addr[pin].addr, reg);
- #else
- pos = pin / MAX_GPIO_REG_BITS;
- if (dir == GPIO_DIR_IN)
- GPIO_SET_BITS((1L << bit), &obj->reg->dir[pos].rst);
- else
- GPIO_SET_BITS((1L << bit), &obj->reg->dir[pos].set);
- #endif
- return RSUCCESS;
- }
- /*---------------------------------------------------------------------------*/
- S32 mt_get_gpio_dir_chip(u32 pin)
- {
- u32 bit;
- u32 reg;
- if (pin >= MAX_GPIO_PIN)
- return -ERINVAL;
- bit = DIR_offset[pin].offset;
- reg = GPIO_RD32(DIR_addr[pin].addr);
- return (((reg & (1L << bit)) != 0) ? 1 : 0);
- }
- /*---------------------------------------------------------------------------*/
- S32 mt_set_gpio_pull_enable_chip(u32 pin, u32 enable)
- {
- int err = 0;
- if (pin >= MAX_GPIO_PIN)
- return -ERINVAL;
- if ((PUPD_offset[pin].offset == -1) && -1 == PU_offset[pin].offset && -1 == PD_offset[pin].offset)
- return GPIO_PULL_UNSUPPORTED;
- if (GPIO_PULL_DISABLE == enable) {
- /*r0==0 && r1 ==0 */
- err = mt_set_gpio_pull_select_chip(pin, GPIO_NO_PULL);
- return err;
- } else {
- err = mt_set_gpio_pull_select_chip(pin, GPIO_PULL_UP);
- return err;
- }
- return RSUCCESS;
- }
- /*---------------------------------------------------------------------------*/
- S32 mt_get_gpio_pull_enable_chip(u32 pin)
- {
- int res = 0;
- if (pin >= MAX_GPIO_PIN)
- return -ERINVAL;
- res = mt_get_gpio_pull_select_chip(pin);
- if (2 == res)
- return 0; /*disable */
- if (1 == res || 0 == res)
- return 1; /*enable */
- if (-1 == res)
- return -1;
- return -ERWRAPPER;
- }
- /*---------------------------------------------------------------------------*/
- S32 mt_set_gpio_smt_chip(u32 pin, u32 enable)
- {
- #ifdef GPIO_BRINGUP
- u32 reg = 0;
- u32 bit = 0;
- #endif
- if (pin >= MAX_GPIO_PIN)
- return -ERINVAL;
- #ifdef GPIO_BRINGUP
- if (SMT_offset[pin].offset == -1) {
- return GPIO_SMT_UNSUPPORTED;
- } else {
- bit = SMT_offset[pin].offset;
- reg = GPIO_RD32(SMT_addr[pin].addr);
- if (enable == GPIO_SMT_DISABLE)
- reg &= (~(1 << bit));
- else
- reg |= (1 << bit);
- }
- GPIO_WR32(SMT_addr[pin].addr, reg);
- #else
- if (SMT_offset[pin].offset == -1) {
- return GPIO_SMT_UNSUPPORTED;
- } else {
- if (enable == GPIO_SMT_DISABLE)
- GPIO_SET_BITS((1L << (SMT_offset[pin].offset)), SMT_addr[pin].addr + 8);
- else
- GPIO_SET_BITS((1L << (SMT_offset[pin].offset)), SMT_addr[pin].addr + 4);
- }
- #endif
- return RSUCCESS;
- }
- /*---------------------------------------------------------------------------*/
- S32 mt_get_gpio_smt_chip(u32 pin)
- {
- unsigned long data;
- u32 bit = 0;
- bit = SMT_offset[pin].offset;
- if (pin >= MAX_GPIO_PIN)
- return -ERINVAL;
- if (SMT_offset[pin].offset == -1) {
- return GPIO_SMT_UNSUPPORTED;
- } else {
- data = GPIO_RD32(SMT_addr[pin].addr);
- return (((data & (1L << bit)) != 0) ? 1 : 0);
- }
- }
- /*---------------------------------------------------------------------------*/
- S32 mt_set_gpio_ies_chip(u32 pin, u32 enable)
- {
- if (pin >= MAX_GPIO_PIN)
- return -ERINVAL;
- if (IES_offset[pin].offset == -1) {
- return GPIO_IES_UNSUPPORTED;
- } else {
- if (enable == GPIO_IES_DISABLE)
- GPIO_SET_BITS((1L << (IES_offset[pin].offset)), IES_addr[pin].addr + 8);
- else
- GPIO_SET_BITS((1L << (IES_offset[pin].offset)), IES_addr[pin].addr + 4);
- }
- return RSUCCESS;
- }
- /*---------------------------------------------------------------------------*/
- S32 mt_get_gpio_ies_chip(u32 pin)
- {
- unsigned long data;
- if (pin >= MAX_GPIO_PIN)
- return -ERINVAL;
- if (IES_offset[pin].offset == -1) {
- return GPIO_IES_UNSUPPORTED;
- } else {
- data = GPIO_RD32(IES_addr[pin].addr);
- return (((data & (1L << (IES_offset[pin].offset))) != 0) ? 1 : 0);
- }
- }
- /*---------------------------------------------------------------------------*/
- /*
- r0 ==0 && r1 ==0 High-Z(no pull)
- */
- S32 mt_set_gpio_pull_select_rx_chip(u32 pin, u32 r0, u32 r1)
- {
- #ifdef GPIO_BRINGUP
- u32 reg = 0;
- if (0 == r0) {
- reg = GPIO_RD32(R0_addr[pin].addr);
- reg &= (~(1 << R0_offset[pin].offset));
- GPIO_WR32(R0_addr[pin].addr, reg);
- }
- if (1 == r0) {
- reg = GPIO_RD32(R0_addr[pin].addr);
- reg |= (1 << R0_offset[pin].offset);
- GPIO_WR32(R0_addr[pin].addr, reg);
- }
- if (0 == r1) {
- reg = GPIO_RD32(R1_addr[pin].addr);
- reg &= (~(1 << R1_offset[pin].offset));
- GPIO_WR32(R1_addr[pin].addr, reg);
- }
- if (1 == r1) {
- reg = GPIO_RD32(R1_addr[pin].addr);
- reg |= (1 << R1_offset[pin].offset);
- GPIO_WR32(R1_addr[pin].addr, reg);
- }
- #else
- if (0 == r0)
- GPIO_SET_BITS((1L << (R0_offset[pin].offset)), R0_addr[pin].addr + 8);
- if (1 == r0)
- GPIO_SET_BITS((1L << (R0_offset[pin].offset)), R0_addr[pin].addr + 4);
- if (0 == r1)
- GPIO_SET_BITS((1L << (R1_offset[pin].offset)), R1_addr[pin].addr + 8);
- if (1 == r1)
- GPIO_SET_BITS((1L << (R1_offset[pin].offset)), R1_addr[pin].addr + 4);
- #endif
- return 0;
- }
- S32 mt_set_gpio_pull_select_chip(u32 pin, u32 select)
- {
- #ifdef GPIO_BRINGUP
- u32 reg = 0;
- u32 pu_reg = 0;
- u32 pd_reg = 0;
- unsigned long pupd_bit = 0;
- unsigned long pu_bit = 0;
- unsigned long pd_bit = 0;
- #endif
- if (pin >= MAX_GPIO_PIN)
- return -ERINVAL;
- #ifdef GPIO_BRINGUP
- if ((PUPD_offset[pin].offset == -1) && -1 == PU_offset[pin].offset && -1 == PD_offset[pin].offset)
- return GPIO_PULL_UNSUPPORTED;
- if (-1 != PUPD_offset[pin].offset) {
- /*PULL UP */
- mt_set_gpio_pull_select_rx_chip(pin, 0, 1); /*must first set default value r0=0, r1 =1 */
- pupd_bit = PUPD_offset[pin].offset;
- reg = GPIO_RD32(PUPD_addr[pin].addr);
- if (select == GPIO_PULL_UP)
- reg &= (~(1 << pupd_bit));
- else if (select == GPIO_PULL_DOWN)
- reg |= (1 << pupd_bit);
- else if (GPIO_NO_PULL == select) {
- mt_set_gpio_pull_select_rx_chip(pin, 0, 0);
- } else
- return -ERWRAPPER;
- GPIO_WR32(PUPD_addr[pin].addr, reg);
- return RSUCCESS;
- }
- if (-1 != PU_offset[pin].offset && -1 != PD_offset[pin].offset) {
- pu_bit = PU_offset[pin].offset;
- pd_bit = PD_offset[pin].offset;
- pu_reg = GPIO_RD32(PU_addr[pin].addr);
- pd_reg = GPIO_RD32(PD_addr[pin].addr);
- if (select == GPIO_PULL_UP) {
- pu_reg |= (1 << pu_bit);
- pd_reg &= (~(1 << pd_bit));
- } else if (GPIO_PULL_DOWN == select) {
- pu_reg &= (~(1 << pu_bit));
- pd_reg |= (1 << pd_bit);
- } else if (GPIO_NO_PULL) {
- pd_reg &= (~(1 << pd_bit));
- pu_reg &= (~(1 << pu_bit));
- } else {
- return -ERWRAPPER;
- }
- GPIO_WR32(PU_addr[pin].addr, pu_reg);
- GPIO_WR32(PD_addr[pin].addr, pd_reg);
- return RSUCCESS;
- } else if (-1 != PU_offset[pin].offset) { /*pu==1 is pull up, pu ==0 is no pull */
- pu_reg = GPIO_RD32(PU_addr[pin].addr);
- pu_bit = PU_offset[pin].offset;
- if (select == GPIO_PULL_UP) {
- pu_reg |= (1 << pu_bit);
- } else if (GPIO_PULL_DOWN == select) {
- return GPIO_NOPULLDOWN;
- } else if (GPIO_NO_PULL) {
- pu_reg &= (~(1 << pu_bit));
- } else
- return -ERWRAPPER;
- GPIO_WR32(PU_addr[pin].addr, pu_reg);
- return RSUCCESS;
- } else {
- pd_reg = GPIO_RD32(PD_addr[pin].addr);
- pd_bit = PD_offset[pin].offset;
- if (select == GPIO_PULL_UP) {
- return GPIO_NOPULLUP;
- } else if (GPIO_PULL_DOWN == select) {
- pd_reg |= (1 << pd_bit);
- } else if (GPIO_NO_PULL) {
- pd_reg &= (~(1 << pd_bit));
- } else
- return -ERWRAPPER;
- GPIO_WR32(PD_addr[pin].addr, pd_reg);
- return RSUCCESS;
- }
- #else
- if ((PUPD_offset[pin].offset == -1) && (-1 == PU_offset[pin].offset)
- && (-1 == PD_offset[pin].offset)) {
- return GPIO_PULL_UNSUPPORTED;
- }
- if (-1 != PUPD_offset[pin].offset) {
- if (select == GPIO_PULL_UP)
- GPIO_SET_BITS((1L << (PUPD_offset[pin].offset)), PUPD_addr[pin].addr + 8);
- else if (GPIO_PULL_DOWN == select)
- GPIO_SET_BITS((1L << (PUPD_offset[pin].offset)), PUPD_addr[pin].addr + 4);
- else if (GPIO_NO_PULL)
- mt_set_gpio_pull_select_rx_chip(pin, 0, 0);
- else
- return -ERWRAPPER;
- return RSUCCESS;
- }
- if (-1 != PU_offset[pin].offset && -1 != PD_offset[pin].offset) {
- if (select == GPIO_PULL_UP) {
- GPIO_SET_BITS((1L << (PU_offset[pin].offset)), PU_addr[pin].addr + 4);
- GPIO_SET_BITS((1L << (PD_offset[pin].offset)), PD_addr[pin].addr + 8);
- } else if (GPIO_PULL_DOWN == select) {
- GPIO_SET_BITS((1L << (PD_offset[pin].offset)), PD_addr[pin].addr + 4);
- GPIO_SET_BITS((1L << (PU_offset[pin].offset)), PU_addr[pin].addr + 8);
- } else if (GPIO_NO_PULL) {
- GPIO_SET_BITS((1L << (PD_offset[pin].offset)), PD_addr[pin].addr + 8);
- GPIO_SET_BITS((1L << (PU_offset[pin].offset)), PU_addr[pin].addr + 8);
- } else
- return -ERWRAPPER;
- return RSUCCESS;
- } else if (-1 != PU_offset[pin].offset) {
- if (select == GPIO_PULL_UP)
- GPIO_SET_BITS((1L << (PU_offset[pin].offset)), PU_addr[pin].addr + 4);
- else if (GPIO_PULL_DOWN == select)
- return GPIO_NOPULLDOWN;
- else if (GPIO_NO_PULL)
- GPIO_SET_BITS((1L << (PU_offset[pin].offset)), PU_addr[pin].addr + 8);
- else
- return -ERWRAPPER;
- return RSUCCESS;
- } else {
- if (select == GPIO_PULL_UP) {
- return GPIO_NOPULLUP;
- } else if (GPIO_PULL_DOWN == select) {
- GPIO_SET_BITS((1L << (PD_offset[pin].offset)), PD_addr[pin].addr + 4);
- } else if (GPIO_NO_PULL) {
- GPIO_SET_BITS((1L << (PD_offset[pin].offset)), PD_addr[pin].addr + 8);
- } else
- return -ERWRAPPER;
- return RSUCCESS;
- }
- #endif
- }
- /*---------------------------------------------------------------------------*/
- S32 mt_get_gpio_pull_select_chip(u32 pin)
- {
- unsigned long data;
- unsigned long r0;
- unsigned long r1;
- unsigned long pu = 0;
- unsigned long pd = 0;
- if ((PUPD_offset[pin].offset == -1) && -1 == PU_offset[pin].offset && -1 == PD_offset[pin].offset) {
- return GPIO_PULL_UNSUPPORTED;
- }
- /*pupd==0 is pull up or no pull */
- if (-1 != PUPD_offset[pin].offset) {
- data = GPIO_RD32(PUPD_addr[pin].addr);
- r0 = GPIO_RD32(R0_addr[pin].addr);
- r1 = GPIO_RD32(R1_addr[pin].addr);
- if (0 == (data & (1L << (PUPD_offset[pin].offset)))) {
- if (0 == (r0 & (1L << (R0_offset[pin].offset)))
- && 0 == (r1 & (1L << (R1_offset[pin].offset))))
- return GPIO_NO_PULL; /*High Z(no pull) */
- else
- return GPIO_PULL_UP; /* pull up */
- }
- /*pupd==1 is pull down or no pull */
- if (0 != (data & (1L << (PUPD_offset[pin].offset)))) {
- if (0 == (r0 & (1L << (R0_offset[pin].offset)))
- && 0 == (r1 & (1L << (R1_offset[pin].offset))))
- return GPIO_NO_PULL; /*High Z(no pull) */
- else
- return GPIO_PULL_DOWN; /* pull down */
- }
- }
- if (-1 != PU_offset[pin].offset && -1 != PD_offset[pin].offset) {
- pu = GPIO_RD32(PU_addr[pin].addr);
- pd = GPIO_RD32(PD_addr[pin].addr);
- if (0 != (pu & (1L << (PU_offset[pin].offset))))
- pu = 1;
- else
- pu = 0;
- if (0 != (pd & (1L << (PD_offset[pin].offset))))
- pd = 1;
- else
- pd = 0;
- if (0 == pu && 0 == pd) /*no pull */
- return GPIO_NO_PULL;
- else if (1 == pu && 1 == pd)
- return -1; /* err */
- else if (1 == pu && 0 == pd)
- return GPIO_PULL_UP; /* pull up */
- else
- return GPIO_PULL_DOWN; /* pull down */
- } else if (-1 != PU_offset[pin].offset) { /*pu==1 is pull up, pu ==0 is no pull */
- pu = GPIO_RD32(PU_addr[pin].addr);
- if (0 != (pu & (1L << (PU_offset[pin].offset))))
- return GPIO_PULL_UP; /* pull up */
- else
- return GPIO_NO_PULL; /*High Z(no pull) */
- } else {
- pd = GPIO_RD32(PD_addr[pin].addr);
- if (0 != (pd & (1L << (PD_offset[pin].offset))))
- return GPIO_PULL_DOWN; /* pull down */
- else
- return GPIO_NO_PULL; /*High Z(no pull) */
- }
- }
- /*---------------------------------------------------------------------------*/
- S32 mt_set_gpio_driving_chip(u32 pin, GPIO_DRV driving)
- {
- u32 bit = 0;
- #ifdef GPIO_BRINGUP
- u32 reg = 0;
- #endif
- if (pin >= MAX_GPIO_PIN)
- return -ERINVAL;
- bit = DRV_offset[pin].offset;
- if (-1 == DRV_width[pin].width)
- return -ERWRAPPER;
- #ifdef GPIO_BRINGUP
- if (3 == DRV_width[pin].width) {
- if (driving > 0x7)
- return -ERWRAPPER;
- reg = GPIO_RD32(DRV_addr[pin].addr);
- reg &= ~(0x7 << bit);
- GPIO_WR32(DRV_addr[pin].addr, reg);
- reg = GPIO_RD32(DRV_addr[pin].addr);
- reg |= (driving << bit);
- GPIO_WR32(DRV_addr[pin].addr, reg);
- } else if (2 == DRV_width[pin].width) {
- if (driving > 0x3)
- return -ERWRAPPER;
- reg = GPIO_RD32(DRV_addr[pin].addr);
- reg &= ~(0x3 << bit);
- GPIO_WR32(DRV_addr[pin].addr, reg);
- reg = GPIO_RD32(DRV_addr[pin].addr);
- reg |= (driving << bit);
- GPIO_WR32(DRV_addr[pin].addr, reg);
- } else if (1 == DRV_width[pin].width) {
- if (driving > 1)
- return -ERWRAPPER;
- reg = GPIO_RD32(DRV_addr[pin].addr);
- reg &= ~(0x1 << bit);
- GPIO_WR32(DRV_addr[pin].addr, reg);
- reg = GPIO_RD32(DRV_addr[pin].addr);
- reg |= (driving << bit);
- GPIO_WR32(DRV_addr[pin].addr, reg);
- }
- #else
- if (3 == DRV_width[pin].width) {
- if (driving > 0x7)
- return -ERWRAPPER;
- /*clear all bit first*/
- GPIO_SET_BITS((0x7 << bit), DRV_addr[pin].addr + 8);
- GPIO_SET_BITS((driving << bit), DRV_addr[pin].addr + 4);
- } else if (2 == DRV_width[pin].width) {
- if (driving > 0x3)
- return -ERWRAPPER;
- /*clear all bit first*/
- GPIO_SET_BITS((0x3 << bit), DRV_addr[pin].addr + 8);
- GPIO_SET_BITS((driving << bit), DRV_addr[pin].addr + 4);
- } else if (1 == DRV_width[pin].width) {
- if (driving > 1)
- return -ERWRAPPER;
- /*clear all bit first*/
- GPIO_SET_BITS((0x1 << bit), DRV_addr[pin].addr + 8);
- GPIO_SET_BITS((driving << bit), DRV_addr[pin].addr + 4);
- }
- #endif
- return RSUCCESS;
- }
- /*---------------------------------------------------------------------------*/
- S32 mt_get_gpio_driving_chip(u32 pin)
- {
- u32 bit;
- if (pin >= MAX_GPIO_PIN)
- return -ERINVAL;
- bit = DRV_offset[pin].offset;
- if (3 == DRV_width[pin].width)
- return (GPIO_RD32(DRV_addr[pin].addr) >> bit) &0x07;
- else if (2 == DRV_width[pin].width)
- return (GPIO_RD32(DRV_addr[pin].addr) >> bit) &0x03;
- else if (1 == DRV_width[pin].width)
- return (GPIO_RD32(DRV_addr[pin].addr) >> bit) &0x01;
- return -ERWRAPPER;
- }
- /*---------------------------------------------------------------------------*/
- S32 mt_set_gpio_out_chip(u32 pin, u32 output)
- {
- u32 bit;
- #ifdef GPIO_BRINGUP
- u32 reg = 0;
- #else
- u32 pos = 0;
- struct mt_gpio_obj *obj = gpio_obj;
- #endif
- if (pin >= MAX_GPIO_PIN)
- return -ERINVAL;
- if (output >= GPIO_OUT_MAX)
- return -ERINVAL;
- bit = DATAOUT_offset[pin].offset;
- #ifdef GPIO_BRINGUP
- reg = GPIO_RD32(DATAOUT_addr[pin].addr);
- if (output == GPIO_OUT_ZERO)
- reg &= (~(1 << bit));
- else
- reg |= (1 << bit);
- GPIO_WR32(DATAOUT_addr[pin].addr, reg);
- #else
- pos = pin / MAX_GPIO_REG_BITS;
- if (output == GPIO_OUT_ZERO)
- GPIO_SET_BITS((1L << bit), &obj->reg->dout[pos].rst);
- else
- GPIO_SET_BITS((1L << bit), &obj->reg->dout[pos].set);
- #endif
- return RSUCCESS;
- }
- /*---------------------------------------------------------------------------*/
- S32 mt_get_gpio_out_chip(u32 pin)
- {
- u32 pos;
- u32 bit;
- u32 reg;
- struct mt_gpio_obj *obj = gpio_obj;
- if (!obj)
- return -ERACCESS;
- if (pin >= MAX_GPIO_PIN)
- return -ERINVAL;
- pos = pin / MAX_GPIO_REG_BITS;
- bit = pin % MAX_GPIO_REG_BITS;
- reg = GPIO_RD32(&obj->reg->dout[pos].val);
- return (((reg & (1L << bit)) != 0) ? 1 : 0);
- }
- /*---------------------------------------------------------------------------*/
- S32 mt_get_gpio_in_chip(u32 pin)
- {
- u32 bit;
- u32 reg;
- struct mt_gpio_obj *obj = gpio_obj;
- if (!obj)
- return -ERACCESS;
- if (pin >= MAX_GPIO_PIN)
- return -ERINVAL;
- bit = DATAIN_offset[pin].offset;
- reg = GPIO_RD32(DATAIN_addr[pin].addr);
- return (((reg & (1L << bit)) != 0) ? 1 : 0);
- }
- /*---------------------------------------------------------------------------*/
- S32 mt_set_gpio_mode_chip(u32 pin, u32 mode)
- {
- u32 bit;
- u32 reg;
- #ifdef GPIO_BRINGUP
- u32 mask = (1L << GPIO_MODE_BITS) - 1;
- #else
- u32 pos;
- struct mt_gpio_obj *obj = gpio_obj;
- #endif
- if (pin >= MAX_GPIO_PIN)
- return -ERINVAL;
- if (mode >= GPIO_MODE_MAX)
- return -ERINVAL;
- bit = MODE_offset[pin].offset;
- #ifdef GPIO_BRINGUP
- mode = mode & 0x7;
- reg = GPIO_RD32(MODE_addr[pin].addr);
- reg &= (~(mask << bit));
- reg |= (mode << bit);
- GPIO_WR32(MODE_addr[pin].addr, reg);
- #else
- pos = pin / MAX_GPIO_MODE_PER_REG;
- reg = ((1L << (GPIO_MODE_BITS * bit)) << 3) | (mode << (GPIO_MODE_BITS * bit));
- GPIO_WR32(&obj->reg->mode[pos]._align1, reg);
- #endif
- return RSUCCESS;
- }
- /*---------------------------------------------------------------------------*/
- S32 mt_get_gpio_mode_chip(u32 pin)
- {
- u32 bit;
- u32 reg;
- u32 mask = (1L << GPIO_MODE_BITS) - 1;
- if (pin >= MAX_GPIO_PIN)
- return -ERINVAL;
- bit = MODE_offset[pin].offset;
- reg = GPIO_RD32(MODE_addr[pin].addr);
- return ((reg >> bit) & mask);
- }
- /*---------------------------------------------------------------------------*/
- void mt_gpio_pin_decrypt(u32 * cipher)
- {
- /*just for debug, find out who used pin number directly */
- if ((*cipher & (0x80000000)) == 0) {
- /*GPIOERR("Pin %d decrypt warning! \n", *cipher);*/
- }
- *cipher &= ~(0x80000000);
- return;
- }
- /*set GPIO function in fact*/
- /*---------------------------------------------------------------------------*/
- S32 mt_set_gpio_dir(u32 pin, u32 dir)
- {
- mt_gpio_pin_decrypt(&pin);
- return mt_set_gpio_dir_chip(pin, dir);
- }
- /*---------------------------------------------------------------------------*/
- S32 mt_get_gpio_dir(u32 pin)
- {
- mt_gpio_pin_decrypt(&pin);
- return mt_get_gpio_dir_chip(pin);
- }
- /*---------------------------------------------------------------------------*/
- S32 mt_set_gpio_pull_enable(u32 pin, u32 enable)
- {
- mt_gpio_pin_decrypt(&pin);
- return mt_set_gpio_pull_enable_chip(pin, enable);
- }
- /*---------------------------------------------------------------------------*/
- S32 mt_get_gpio_pull_enable(u32 pin)
- {
- mt_gpio_pin_decrypt(&pin);
- return mt_get_gpio_pull_enable_chip(pin);
- }
- /*---------------------------------------------------------------------------*/
- S32 mt_set_gpio_pull_select(u32 pin, u32 select)
- {
- mt_gpio_pin_decrypt(&pin);
- return mt_set_gpio_pull_select_chip(pin, select);
- }
- /*---------------------------------------------------------------------------*/
- S32 mt_get_gpio_pull_select(u32 pin)
- {
- mt_gpio_pin_decrypt(&pin);
- return mt_get_gpio_pull_select_chip(pin);
- }
- /*---------------------------------------------------------------------------*/
- S32 mt_set_gpio_smt(u32 pin, u32 enable)
- {
- mt_gpio_pin_decrypt(&pin);
- return mt_set_gpio_smt_chip(pin, enable);
- }
- /*---------------------------------------------------------------------------*/
- S32 mt_get_gpio_smt(u32 pin)
- {
- mt_gpio_pin_decrypt(&pin);
- return mt_get_gpio_smt_chip(pin);
- }
- /*---------------------------------------------------------------------------*/
- S32 mt_set_gpio_ies(u32 pin, u32 enable)
- {
- mt_gpio_pin_decrypt(&pin);
- return mt_set_gpio_ies_chip(pin, enable);
- }
- /*---------------------------------------------------------------------------*/
- S32 mt_get_gpio_ies(u32 pin)
- {
- mt_gpio_pin_decrypt(&pin);
- return mt_get_gpio_ies_chip(pin);
- }
- /*---------------------------------------------------------------------------*/
- S32 mt_set_gpio_out(u32 pin, u32 output)
- {
- mt_gpio_pin_decrypt(&pin);
- return mt_set_gpio_out_chip(pin, output);
- }
- /*---------------------------------------------------------------------------*/
- S32 mt_get_gpio_out(u32 pin)
- {
- mt_gpio_pin_decrypt(&pin);
- return mt_get_gpio_out_chip(pin);
- }
- /*---------------------------------------------------------------------------*/
- S32 mt_get_gpio_in(u32 pin)
- {
- mt_gpio_pin_decrypt(&pin);
- return mt_get_gpio_in_chip(pin);
- }
- /*---------------------------------------------------------------------------*/
- S32 mt_set_gpio_mode(u32 pin, u32 mode)
- {
- mt_gpio_pin_decrypt(&pin);
- return mt_set_gpio_mode_chip(pin, mode);
- }
- /*---------------------------------------------------------------------------*/
- S32 mt_get_gpio_mode(u32 pin)
- {
- mt_gpio_pin_decrypt(&pin);
- return mt_get_gpio_mode_chip(pin);
- }
- /*---------------------------------------------------------------------------*/
- S32 mt_set_gpio_drving(u32 pin, GPIO_DRV driving)
- {
- mt_gpio_pin_decrypt(&pin);
- return mt_set_gpio_driving_chip(pin, driving);
- }
- /*---------------------------------------------------------------------------*/
- S32 mt_get_gpio_drving(u32 pin)
- {
- mt_gpio_pin_decrypt(&pin);
- return mt_get_gpio_driving_chip(pin);
- }
- /*Special request for reading input value high, low, floating*/
- S32 mt_get_gpio_value(int gpio)
- {
- char value_up, value_down;
- mt_set_gpio_mode(gpio, GPIO_MODE_00);
- mt_set_gpio_dir(gpio, GPIO_DIR_IN);
- mt_set_gpio_pull_enable(gpio, GPIO_PULL_ENABLE);
- mt_set_gpio_pull_select(gpio, GPIO_PULL_UP);
- value_up = mt_get_gpio_in(gpio);
- mt_set_gpio_pull_select(gpio, GPIO_PULL_DOWN);
- value_down = mt_get_gpio_in(gpio);
- return value_down | (value_up << 0x01);
- }
- /*****************************************************************************/
- /* sysfs operation */
- /*****************************************************************************/
- #endif
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