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https://github.com/AuxXxilium/linux_dsm_epyc7002.git
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67d16a4686
Realtek PCI-E card reader driver adapts requests from upper-level sdmmc/memstick layer to the real physical card reader. Signed-off-by: Wei WANG <wei_wang@realsil.com.cn> Reviewed-by: Arnd Bergmann <arnd@arndb.de> Tested-by: Borislav Petkov <bp@alien8.de> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
795 lines
21 KiB
C
795 lines
21 KiB
C
/* Driver for Realtek PCI-Express card reader
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*
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* Copyright(c) 2009 Realtek Semiconductor Corp. All rights reserved.
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*
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* This program is free software; you can redistribute it and/or modify it
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* under the terms of the GNU General Public License as published by the
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* Free Software Foundation; either version 2, or (at your option) any
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* later version.
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*
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* This program is distributed in the hope that it will be useful, but
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* WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License along
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* with this program; if not, see <http://www.gnu.org/licenses/>.
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*
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* Author:
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* Wei WANG <wei_wang@realsil.com.cn>
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* No. 450, Shenhu Road, Suzhou Industry Park, Suzhou, China
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*/
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#ifndef __RTSX_PCI_H
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#define __RTSX_PCI_H
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#include <linux/sched.h>
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#include <linux/pci.h>
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#include "rtsx_common.h"
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#define MAX_RW_REG_CNT 1024
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/* PCI Operation Register Address */
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#define RTSX_HCBAR 0x00
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#define RTSX_HCBCTLR 0x04
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#define RTSX_HDBAR 0x08
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#define RTSX_HDBCTLR 0x0C
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#define RTSX_HAIMR 0x10
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#define RTSX_BIPR 0x14
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#define RTSX_BIER 0x18
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/* Host command buffer control register */
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#define STOP_CMD (0x01 << 28)
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/* Host data buffer control register */
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#define SDMA_MODE 0x00
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#define ADMA_MODE (0x02 << 26)
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#define STOP_DMA (0x01 << 28)
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#define TRIG_DMA (0x01 << 31)
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/* Host access internal memory register */
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#define HAIMR_TRANS_START (0x01 << 31)
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#define HAIMR_READ 0x00
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#define HAIMR_WRITE (0x01 << 30)
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#define HAIMR_READ_START (HAIMR_TRANS_START | HAIMR_READ)
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#define HAIMR_WRITE_START (HAIMR_TRANS_START | HAIMR_WRITE)
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#define HAIMR_TRANS_END (HAIMR_TRANS_START)
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/* Bus interrupt pending register */
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#define CMD_DONE_INT (1 << 31)
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#define DATA_DONE_INT (1 << 30)
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#define TRANS_OK_INT (1 << 29)
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#define TRANS_FAIL_INT (1 << 28)
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#define XD_INT (1 << 27)
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#define MS_INT (1 << 26)
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#define SD_INT (1 << 25)
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#define GPIO0_INT (1 << 24)
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#define OC_INT (1 << 23)
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#define SD_WRITE_PROTECT (1 << 19)
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#define XD_EXIST (1 << 18)
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#define MS_EXIST (1 << 17)
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#define SD_EXIST (1 << 16)
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#define DELINK_INT GPIO0_INT
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#define MS_OC_INT (1 << 23)
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#define SD_OC_INT (1 << 22)
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#define CARD_INT (XD_INT | MS_INT | SD_INT)
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#define NEED_COMPLETE_INT (DATA_DONE_INT | TRANS_OK_INT | TRANS_FAIL_INT)
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#define RTSX_INT (CMD_DONE_INT | NEED_COMPLETE_INT | \
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CARD_INT | GPIO0_INT | OC_INT)
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#define CARD_EXIST (XD_EXIST | MS_EXIST | SD_EXIST)
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/* Bus interrupt enable register */
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#define CMD_DONE_INT_EN (1 << 31)
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#define DATA_DONE_INT_EN (1 << 30)
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#define TRANS_OK_INT_EN (1 << 29)
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#define TRANS_FAIL_INT_EN (1 << 28)
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#define XD_INT_EN (1 << 27)
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#define MS_INT_EN (1 << 26)
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#define SD_INT_EN (1 << 25)
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#define GPIO0_INT_EN (1 << 24)
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#define OC_INT_EN (1 << 23)
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#define DELINK_INT_EN GPIO0_INT_EN
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#define MS_OC_INT_EN (1 << 23)
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#define SD_OC_INT_EN (1 << 22)
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#define READ_REG_CMD 0
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#define WRITE_REG_CMD 1
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#define CHECK_REG_CMD 2
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/*
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* macros for easy use
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*/
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#define rtsx_pci_writel(pcr, reg, value) \
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iowrite32(value, (pcr)->remap_addr + reg)
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#define rtsx_pci_readl(pcr, reg) \
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ioread32((pcr)->remap_addr + reg)
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#define rtsx_pci_writew(pcr, reg, value) \
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iowrite16(value, (pcr)->remap_addr + reg)
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#define rtsx_pci_readw(pcr, reg) \
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ioread16((pcr)->remap_addr + reg)
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#define rtsx_pci_writeb(pcr, reg, value) \
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iowrite8(value, (pcr)->remap_addr + reg)
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#define rtsx_pci_readb(pcr, reg) \
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ioread8((pcr)->remap_addr + reg)
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#define rtsx_pci_read_config_byte(pcr, where, val) \
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pci_read_config_byte((pcr)->pci, where, val)
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#define rtsx_pci_write_config_byte(pcr, where, val) \
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pci_write_config_byte((pcr)->pci, where, val)
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#define rtsx_pci_read_config_dword(pcr, where, val) \
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pci_read_config_dword((pcr)->pci, where, val)
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#define rtsx_pci_write_config_dword(pcr, where, val) \
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pci_write_config_dword((pcr)->pci, where, val)
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#define STATE_TRANS_NONE 0
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#define STATE_TRANS_CMD 1
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#define STATE_TRANS_BUF 2
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#define STATE_TRANS_SG 3
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#define TRANS_NOT_READY 0
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#define TRANS_RESULT_OK 1
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#define TRANS_RESULT_FAIL 2
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#define TRANS_NO_DEVICE 3
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#define RTSX_RESV_BUF_LEN 4096
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#define HOST_CMDS_BUF_LEN 1024
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#define HOST_SG_TBL_BUF_LEN (RTSX_RESV_BUF_LEN - HOST_CMDS_BUF_LEN)
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#define HOST_SG_TBL_ITEMS (HOST_SG_TBL_BUF_LEN / 8)
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#define MAX_SG_ITEM_LEN 0x80000
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#define HOST_TO_DEVICE 0
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#define DEVICE_TO_HOST 1
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#define MAX_PHASE 31
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#define RX_TUNING_CNT 3
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/* SG descriptor */
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#define SG_INT 0x04
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#define SG_END 0x02
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#define SG_VALID 0x01
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#define SG_NO_OP 0x00
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#define SG_TRANS_DATA (0x02 << 4)
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#define SG_LINK_DESC (0x03 << 4)
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/* SD bank voltage */
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#define SD_IO_3V3 0
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#define SD_IO_1V8 1
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/* Card Clock Enable Register */
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#define SD_CLK_EN 0x04
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#define MS_CLK_EN 0x08
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/* Card Select Register */
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#define SD_MOD_SEL 2
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#define MS_MOD_SEL 3
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/* Card Output Enable Register */
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#define SD_OUTPUT_EN 0x04
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#define MS_OUTPUT_EN 0x08
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/* CARD_SHARE_MODE */
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#define CARD_SHARE_MASK 0x0F
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#define CARD_SHARE_MULTI_LUN 0x00
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#define CARD_SHARE_NORMAL 0x00
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#define CARD_SHARE_48_SD 0x04
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#define CARD_SHARE_48_MS 0x08
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/* CARD_SHARE_MODE for barossa */
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#define CARD_SHARE_BAROSSA_SD 0x01
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#define CARD_SHARE_BAROSSA_MS 0x02
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/* SD30_DRIVE_SEL */
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#define DRIVER_TYPE_A 0x05
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#define DRIVER_TYPE_B 0x03
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#define DRIVER_TYPE_C 0x02
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#define DRIVER_TYPE_D 0x01
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/* FPDCTL */
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#define SSC_POWER_DOWN 0x01
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#define SD_OC_POWER_DOWN 0x02
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#define ALL_POWER_DOWN 0x07
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#define OC_POWER_DOWN 0x06
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/* CLK_CTL */
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#define CHANGE_CLK 0x01
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/* LDO_CTL */
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#define BPP_LDO_POWB 0x03
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#define BPP_LDO_ON 0x00
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#define BPP_LDO_SUSPEND 0x02
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#define BPP_LDO_OFF 0x03
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/* CD_PAD_CTL */
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#define CD_DISABLE_MASK 0x07
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#define MS_CD_DISABLE 0x04
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#define SD_CD_DISABLE 0x02
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#define XD_CD_DISABLE 0x01
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#define CD_DISABLE 0x07
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#define CD_ENABLE 0x00
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#define MS_CD_EN_ONLY 0x03
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#define SD_CD_EN_ONLY 0x05
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#define XD_CD_EN_ONLY 0x06
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#define FORCE_CD_LOW_MASK 0x38
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#define FORCE_CD_XD_LOW 0x08
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#define FORCE_CD_SD_LOW 0x10
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#define FORCE_CD_MS_LOW 0x20
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#define CD_AUTO_DISABLE 0x40
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/* SD_STAT1 */
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#define SD_CRC7_ERR 0x80
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#define SD_CRC16_ERR 0x40
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#define SD_CRC_WRITE_ERR 0x20
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#define SD_CRC_WRITE_ERR_MASK 0x1C
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#define GET_CRC_TIME_OUT 0x02
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#define SD_TUNING_COMPARE_ERR 0x01
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/* SD_STAT2 */
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#define SD_RSP_80CLK_TIMEOUT 0x01
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/* SD_BUS_STAT */
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#define SD_CLK_TOGGLE_EN 0x80
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#define SD_CLK_FORCE_STOP 0x40
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#define SD_DAT3_STATUS 0x10
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#define SD_DAT2_STATUS 0x08
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#define SD_DAT1_STATUS 0x04
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#define SD_DAT0_STATUS 0x02
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#define SD_CMD_STATUS 0x01
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/* SD_PAD_CTL */
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#define SD_IO_USING_1V8 0x80
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#define SD_IO_USING_3V3 0x7F
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#define TYPE_A_DRIVING 0x00
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#define TYPE_B_DRIVING 0x01
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#define TYPE_C_DRIVING 0x02
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#define TYPE_D_DRIVING 0x03
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/* SD_SAMPLE_POINT_CTL */
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#define DDR_FIX_RX_DAT 0x00
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#define DDR_VAR_RX_DAT 0x80
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#define DDR_FIX_RX_DAT_EDGE 0x00
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#define DDR_FIX_RX_DAT_14_DELAY 0x40
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#define DDR_FIX_RX_CMD 0x00
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#define DDR_VAR_RX_CMD 0x20
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#define DDR_FIX_RX_CMD_POS_EDGE 0x00
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#define DDR_FIX_RX_CMD_14_DELAY 0x10
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#define SD20_RX_POS_EDGE 0x00
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#define SD20_RX_14_DELAY 0x08
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#define SD20_RX_SEL_MASK 0x08
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/* SD_PUSH_POINT_CTL */
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#define DDR_FIX_TX_CMD_DAT 0x00
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#define DDR_VAR_TX_CMD_DAT 0x80
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#define DDR_FIX_TX_DAT_14_TSU 0x00
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#define DDR_FIX_TX_DAT_12_TSU 0x40
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#define DDR_FIX_TX_CMD_NEG_EDGE 0x00
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#define DDR_FIX_TX_CMD_14_AHEAD 0x20
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#define SD20_TX_NEG_EDGE 0x00
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#define SD20_TX_14_AHEAD 0x10
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#define SD20_TX_SEL_MASK 0x10
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#define DDR_VAR_SDCLK_POL_SWAP 0x01
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/* SD_TRANSFER */
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#define SD_TRANSFER_START 0x80
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#define SD_TRANSFER_END 0x40
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#define SD_STAT_IDLE 0x20
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#define SD_TRANSFER_ERR 0x10
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/* SD Transfer Mode definition */
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#define SD_TM_NORMAL_WRITE 0x00
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#define SD_TM_AUTO_WRITE_3 0x01
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#define SD_TM_AUTO_WRITE_4 0x02
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#define SD_TM_AUTO_READ_3 0x05
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#define SD_TM_AUTO_READ_4 0x06
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#define SD_TM_CMD_RSP 0x08
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#define SD_TM_AUTO_WRITE_1 0x09
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#define SD_TM_AUTO_WRITE_2 0x0A
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#define SD_TM_NORMAL_READ 0x0C
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#define SD_TM_AUTO_READ_1 0x0D
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#define SD_TM_AUTO_READ_2 0x0E
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#define SD_TM_AUTO_TUNING 0x0F
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/* SD_VPTX_CTL / SD_VPRX_CTL */
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#define PHASE_CHANGE 0x80
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#define PHASE_NOT_RESET 0x40
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/* SD_DCMPS_TX_CTL / SD_DCMPS_RX_CTL */
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#define DCMPS_CHANGE 0x80
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#define DCMPS_CHANGE_DONE 0x40
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#define DCMPS_ERROR 0x20
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#define DCMPS_CURRENT_PHASE 0x1F
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/* SD Configure 1 Register */
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#define SD_CLK_DIVIDE_0 0x00
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#define SD_CLK_DIVIDE_256 0xC0
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#define SD_CLK_DIVIDE_128 0x80
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#define SD_BUS_WIDTH_1BIT 0x00
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#define SD_BUS_WIDTH_4BIT 0x01
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#define SD_BUS_WIDTH_8BIT 0x02
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#define SD_ASYNC_FIFO_NOT_RST 0x10
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#define SD_20_MODE 0x00
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#define SD_DDR_MODE 0x04
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#define SD_30_MODE 0x08
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#define SD_CLK_DIVIDE_MASK 0xC0
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/* SD_CMD_STATE */
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#define SD_CMD_IDLE 0x80
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/* SD_DATA_STATE */
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#define SD_DATA_IDLE 0x80
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/* DCM_DRP_CTL */
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#define DCM_RESET 0x08
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#define DCM_LOCKED 0x04
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#define DCM_208M 0x00
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#define DCM_TX 0x01
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#define DCM_RX 0x02
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/* DCM_DRP_TRIG */
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#define DRP_START 0x80
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#define DRP_DONE 0x40
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/* DCM_DRP_CFG */
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#define DRP_WRITE 0x80
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#define DRP_READ 0x00
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#define DCM_WRITE_ADDRESS_50 0x50
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#define DCM_WRITE_ADDRESS_51 0x51
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#define DCM_READ_ADDRESS_00 0x00
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#define DCM_READ_ADDRESS_51 0x51
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/* IRQSTAT0 */
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#define DMA_DONE_INT 0x80
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#define SUSPEND_INT 0x40
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#define LINK_RDY_INT 0x20
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#define LINK_DOWN_INT 0x10
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/* DMACTL */
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#define DMA_RST 0x80
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#define DMA_BUSY 0x04
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#define DMA_DIR_TO_CARD 0x00
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#define DMA_DIR_FROM_CARD 0x02
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#define DMA_EN 0x01
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#define DMA_128 (0 << 4)
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#define DMA_256 (1 << 4)
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#define DMA_512 (2 << 4)
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#define DMA_1024 (3 << 4)
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#define DMA_PACK_SIZE_MASK 0x30
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/* SSC_CTL1 */
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#define SSC_RSTB 0x80
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#define SSC_8X_EN 0x40
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#define SSC_FIX_FRAC 0x20
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#define SSC_SEL_1M 0x00
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#define SSC_SEL_2M 0x08
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#define SSC_SEL_4M 0x10
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#define SSC_SEL_8M 0x18
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/* SSC_CTL2 */
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#define SSC_DEPTH_MASK 0x07
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#define SSC_DEPTH_DISALBE 0x00
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#define SSC_DEPTH_4M 0x01
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#define SSC_DEPTH_2M 0x02
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#define SSC_DEPTH_1M 0x03
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#define SSC_DEPTH_500K 0x04
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#define SSC_DEPTH_250K 0x05
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/* System Clock Control Register */
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#define CLK_LOW_FREQ 0x01
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/* System Clock Divider Register */
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#define CLK_DIV_1 0x01
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#define CLK_DIV_2 0x02
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#define CLK_DIV_4 0x03
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#define CLK_DIV_8 0x04
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/* MS_CFG */
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#define SAMPLE_TIME_RISING 0x00
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#define SAMPLE_TIME_FALLING 0x80
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#define PUSH_TIME_DEFAULT 0x00
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#define PUSH_TIME_ODD 0x40
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#define NO_EXTEND_TOGGLE 0x00
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#define EXTEND_TOGGLE_CHK 0x20
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#define MS_BUS_WIDTH_1 0x00
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#define MS_BUS_WIDTH_4 0x10
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#define MS_BUS_WIDTH_8 0x18
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#define MS_2K_SECTOR_MODE 0x04
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#define MS_512_SECTOR_MODE 0x00
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#define MS_TOGGLE_TIMEOUT_EN 0x00
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#define MS_TOGGLE_TIMEOUT_DISEN 0x01
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#define MS_NO_CHECK_INT 0x02
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/* MS_TRANS_CFG */
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#define WAIT_INT 0x80
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#define NO_WAIT_INT 0x00
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#define NO_AUTO_READ_INT_REG 0x00
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#define AUTO_READ_INT_REG 0x40
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#define MS_CRC16_ERR 0x20
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#define MS_RDY_TIMEOUT 0x10
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#define MS_INT_CMDNK 0x08
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#define MS_INT_BREQ 0x04
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#define MS_INT_ERR 0x02
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#define MS_INT_CED 0x01
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/* MS_TRANSFER */
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#define MS_TRANSFER_START 0x80
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#define MS_TRANSFER_END 0x40
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#define MS_TRANSFER_ERR 0x20
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#define MS_BS_STATE 0x10
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#define MS_TM_READ_BYTES 0x00
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#define MS_TM_NORMAL_READ 0x01
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#define MS_TM_WRITE_BYTES 0x04
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#define MS_TM_NORMAL_WRITE 0x05
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#define MS_TM_AUTO_READ 0x08
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#define MS_TM_AUTO_WRITE 0x0C
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/* SD Configure 2 Register */
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#define SD_CALCULATE_CRC7 0x00
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#define SD_NO_CALCULATE_CRC7 0x80
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#define SD_CHECK_CRC16 0x00
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#define SD_NO_CHECK_CRC16 0x40
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#define SD_NO_CHECK_WAIT_CRC_TO 0x20
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#define SD_WAIT_BUSY_END 0x08
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#define SD_NO_WAIT_BUSY_END 0x00
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#define SD_CHECK_CRC7 0x00
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#define SD_NO_CHECK_CRC7 0x04
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#define SD_RSP_LEN_0 0x00
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#define SD_RSP_LEN_6 0x01
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#define SD_RSP_LEN_17 0x02
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/* SD/MMC Response Type Definition */
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#define SD_RSP_TYPE_R0 0x04
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#define SD_RSP_TYPE_R1 0x01
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#define SD_RSP_TYPE_R1b 0x09
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#define SD_RSP_TYPE_R2 0x02
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#define SD_RSP_TYPE_R3 0x05
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#define SD_RSP_TYPE_R4 0x05
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#define SD_RSP_TYPE_R5 0x01
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#define SD_RSP_TYPE_R6 0x01
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#define SD_RSP_TYPE_R7 0x01
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/* SD_CONFIURE3 */
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#define SD_RSP_80CLK_TIMEOUT_EN 0x01
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/* Card Transfer Reset Register */
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#define SPI_STOP 0x01
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#define XD_STOP 0x02
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#define SD_STOP 0x04
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#define MS_STOP 0x08
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#define SPI_CLR_ERR 0x10
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#define XD_CLR_ERR 0x20
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#define SD_CLR_ERR 0x40
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#define MS_CLR_ERR 0x80
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/* Card Data Source Register */
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#define PINGPONG_BUFFER 0x01
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#define RING_BUFFER 0x00
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/* Card Power Control Register */
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#define PMOS_STRG_MASK 0x10
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#define PMOS_STRG_800mA 0x10
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#define PMOS_STRG_400mA 0x00
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#define SD_POWER_OFF 0x03
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#define SD_PARTIAL_POWER_ON 0x01
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#define SD_POWER_ON 0x00
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#define SD_POWER_MASK 0x03
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#define MS_POWER_OFF 0x0C
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#define MS_PARTIAL_POWER_ON 0x04
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#define MS_POWER_ON 0x00
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#define MS_POWER_MASK 0x0C
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#define BPP_POWER_OFF 0x0F
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#define BPP_POWER_5_PERCENT_ON 0x0E
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#define BPP_POWER_10_PERCENT_ON 0x0C
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#define BPP_POWER_15_PERCENT_ON 0x08
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#define BPP_POWER_ON 0x00
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#define BPP_POWER_MASK 0x0F
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/* PWR_GATE_CTRL */
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#define PWR_GATE_EN 0x01
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#define LDO3318_PWR_MASK 0x06
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#define LDO_ON 0x00
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#define LDO_SUSPEND 0x04
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#define LDO_OFF 0x06
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/* CARD_CLK_SOURCE */
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#define CRC_FIX_CLK (0x00 << 0)
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#define CRC_VAR_CLK0 (0x01 << 0)
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#define CRC_VAR_CLK1 (0x02 << 0)
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#define SD30_FIX_CLK (0x00 << 2)
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#define SD30_VAR_CLK0 (0x01 << 2)
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#define SD30_VAR_CLK1 (0x02 << 2)
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#define SAMPLE_FIX_CLK (0x00 << 4)
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#define SAMPLE_VAR_CLK0 (0x01 << 4)
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#define SAMPLE_VAR_CLK1 (0x02 << 4)
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#define MS_CFG 0xFD40
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#define MS_TPC 0xFD41
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#define MS_TRANS_CFG 0xFD42
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#define MS_TRANSFER 0xFD43
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#define MS_INT_REG 0xFD44
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#define MS_BYTE_CNT 0xFD45
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#define MS_SECTOR_CNT_L 0xFD46
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#define MS_SECTOR_CNT_H 0xFD47
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#define MS_DBUS_H 0xFD48
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#define SD_CFG1 0xFDA0
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#define SD_CFG2 0xFDA1
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#define SD_CFG3 0xFDA2
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#define SD_STAT1 0xFDA3
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#define SD_STAT2 0xFDA4
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#define SD_BUS_STAT 0xFDA5
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#define SD_PAD_CTL 0xFDA6
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#define SD_SAMPLE_POINT_CTL 0xFDA7
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#define SD_PUSH_POINT_CTL 0xFDA8
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#define SD_CMD0 0xFDA9
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#define SD_CMD1 0xFDAA
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#define SD_CMD2 0xFDAB
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#define SD_CMD3 0xFDAC
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#define SD_CMD4 0xFDAD
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#define SD_CMD5 0xFDAE
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#define SD_BYTE_CNT_L 0xFDAF
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#define SD_BYTE_CNT_H 0xFDB0
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#define SD_BLOCK_CNT_L 0xFDB1
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#define SD_BLOCK_CNT_H 0xFDB2
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#define SD_TRANSFER 0xFDB3
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#define SD_CMD_STATE 0xFDB5
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#define SD_DATA_STATE 0xFDB6
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#define SRCTL 0xFC13
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#define DCM_DRP_CTL 0xFC23
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#define DCM_DRP_TRIG 0xFC24
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#define DCM_DRP_CFG 0xFC25
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#define DCM_DRP_WR_DATA_L 0xFC26
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#define DCM_DRP_WR_DATA_H 0xFC27
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#define DCM_DRP_RD_DATA_L 0xFC28
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#define DCM_DRP_RD_DATA_H 0xFC29
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#define SD_VPCLK0_CTL 0xFC2A
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#define SD_VPCLK1_CTL 0xFC2B
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#define SD_DCMPS0_CTL 0xFC2C
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#define SD_DCMPS1_CTL 0xFC2D
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#define SD_VPTX_CTL SD_VPCLK0_CTL
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#define SD_VPRX_CTL SD_VPCLK1_CTL
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#define SD_DCMPS_TX_CTL SD_DCMPS0_CTL
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#define SD_DCMPS_RX_CTL SD_DCMPS1_CTL
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#define CARD_CLK_SOURCE 0xFC2E
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#define CARD_PWR_CTL 0xFD50
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#define CARD_CLK_SWITCH 0xFD51
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#define CARD_SHARE_MODE 0xFD52
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#define CARD_DRIVE_SEL 0xFD53
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#define CARD_STOP 0xFD54
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#define CARD_OE 0xFD55
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#define CARD_AUTO_BLINK 0xFD56
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#define CARD_GPIO_DIR 0xFD57
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#define CARD_GPIO 0xFD58
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#define CARD_DATA_SOURCE 0xFD5B
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#define CARD_SELECT 0xFD5C
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#define SD30_DRIVE_SEL 0xFD5E
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#define CARD_CLK_EN 0xFD69
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#define SDIO_CTRL 0xFD6B
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#define CD_PAD_CTL 0xFD73
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#define FPDCTL 0xFC00
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#define PDINFO 0xFC01
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#define CLK_CTL 0xFC02
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#define CLK_DIV 0xFC03
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#define CLK_SEL 0xFC04
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#define SSC_DIV_N_0 0xFC0F
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#define SSC_DIV_N_1 0xFC10
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#define SSC_CTL1 0xFC11
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#define SSC_CTL2 0xFC12
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#define RCCTL 0xFC14
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#define FPGA_PULL_CTL 0xFC1D
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#define OLT_LED_CTL 0xFC1E
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#define GPIO_CTL 0xFC1F
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#define LDO_CTL 0xFC1E
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#define SYS_VER 0xFC32
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#define CARD_PULL_CTL1 0xFD60
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#define CARD_PULL_CTL2 0xFD61
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#define CARD_PULL_CTL3 0xFD62
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#define CARD_PULL_CTL4 0xFD63
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#define CARD_PULL_CTL5 0xFD64
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#define CARD_PULL_CTL6 0xFD65
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/* PCI Express Related Registers */
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#define IRQEN0 0xFE20
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#define IRQSTAT0 0xFE21
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#define IRQEN1 0xFE22
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#define IRQSTAT1 0xFE23
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#define TLPRIEN 0xFE24
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#define TLPRISTAT 0xFE25
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#define TLPTIEN 0xFE26
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#define TLPTISTAT 0xFE27
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#define DMATC0 0xFE28
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#define DMATC1 0xFE29
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#define DMATC2 0xFE2A
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#define DMATC3 0xFE2B
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#define DMACTL 0xFE2C
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#define BCTL 0xFE2D
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#define RBBC0 0xFE2E
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#define RBBC1 0xFE2F
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#define RBDAT 0xFE30
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#define RBCTL 0xFE34
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#define CFGADDR0 0xFE35
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#define CFGADDR1 0xFE36
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#define CFGDATA0 0xFE37
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#define CFGDATA1 0xFE38
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#define CFGDATA2 0xFE39
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#define CFGDATA3 0xFE3A
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#define CFGRWCTL 0xFE3B
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#define PHYRWCTL 0xFE3C
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#define PHYDATA0 0xFE3D
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#define PHYDATA1 0xFE3E
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#define PHYADDR 0xFE3F
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#define MSGRXDATA0 0xFE40
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#define MSGRXDATA1 0xFE41
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#define MSGRXDATA2 0xFE42
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#define MSGRXDATA3 0xFE43
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#define MSGTXDATA0 0xFE44
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#define MSGTXDATA1 0xFE45
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#define MSGTXDATA2 0xFE46
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#define MSGTXDATA3 0xFE47
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#define MSGTXCTL 0xFE48
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#define PETXCFG 0xFE49
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#define CDRESUMECTL 0xFE52
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#define WAKE_SEL_CTL 0xFE54
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#define PME_FORCE_CTL 0xFE56
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#define ASPM_FORCE_CTL 0xFE57
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#define PM_CLK_FORCE_CTL 0xFE58
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#define PERST_GLITCH_WIDTH 0xFE5C
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#define CHANGE_LINK_STATE 0xFE5B
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#define RESET_LOAD_REG 0xFE5E
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#define EFUSE_CONTENT 0xFE5F
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#define HOST_SLEEP_STATE 0xFE60
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#define SDIO_CFG 0xFE70
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|
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#define NFTS_TX_CTRL 0xFE72
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|
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#define PWR_GATE_CTRL 0xFE75
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#define PWD_SUSPEND_EN 0xFE76
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#define LDO_PWR_SEL 0xFE78
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#define DUMMY_REG_RESET_0 0xFE90
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|
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/* Memory mapping */
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#define SRAM_BASE 0xE600
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#define RBUF_BASE 0xF400
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#define PPBUF_BASE1 0xF800
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#define PPBUF_BASE2 0xFA00
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#define IMAGE_FLAG_ADDR0 0xCE80
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#define IMAGE_FLAG_ADDR1 0xCE81
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|
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#define rtsx_pci_init_cmd(pcr) ((pcr)->ci = 0)
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|
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struct rtsx_pcr;
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|
|
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struct pcr_handle {
|
|
struct rtsx_pcr *pcr;
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|
};
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|
|
struct pcr_ops {
|
|
int (*extra_init_hw)(struct rtsx_pcr *pcr);
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|
int (*optimize_phy)(struct rtsx_pcr *pcr);
|
|
int (*turn_on_led)(struct rtsx_pcr *pcr);
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|
int (*turn_off_led)(struct rtsx_pcr *pcr);
|
|
int (*enable_auto_blink)(struct rtsx_pcr *pcr);
|
|
int (*disable_auto_blink)(struct rtsx_pcr *pcr);
|
|
int (*card_power_on)(struct rtsx_pcr *pcr, int card);
|
|
int (*card_power_off)(struct rtsx_pcr *pcr, int card);
|
|
unsigned int (*cd_deglitch)(struct rtsx_pcr *pcr);
|
|
};
|
|
|
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enum PDEV_STAT {PDEV_STAT_IDLE, PDEV_STAT_RUN};
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|
|
|
struct rtsx_pcr {
|
|
struct pci_dev *pci;
|
|
unsigned int id;
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|
|
|
/* pci resources */
|
|
unsigned long addr;
|
|
void __iomem *remap_addr;
|
|
int irq;
|
|
|
|
/* host reserved buffer */
|
|
void *rtsx_resv_buf;
|
|
dma_addr_t rtsx_resv_buf_addr;
|
|
|
|
void *host_cmds_ptr;
|
|
dma_addr_t host_cmds_addr;
|
|
int ci;
|
|
|
|
void *host_sg_tbl_ptr;
|
|
dma_addr_t host_sg_tbl_addr;
|
|
int sgi;
|
|
|
|
u32 bier;
|
|
char trans_result;
|
|
|
|
unsigned int card_inserted;
|
|
unsigned int card_removed;
|
|
|
|
struct delayed_work carddet_work;
|
|
struct delayed_work idle_work;
|
|
|
|
spinlock_t lock;
|
|
struct mutex pcr_mutex;
|
|
struct completion *done;
|
|
struct completion *finish_me;
|
|
|
|
unsigned int cur_clock;
|
|
bool ms_pmos;
|
|
bool remove_pci;
|
|
bool msi_en;
|
|
|
|
#define EXTRA_CAPS_SD_SDR50 (1 << 0)
|
|
#define EXTRA_CAPS_SD_SDR104 (1 << 1)
|
|
#define EXTRA_CAPS_SD_DDR50 (1 << 2)
|
|
#define EXTRA_CAPS_MMC_HSDDR (1 << 3)
|
|
#define EXTRA_CAPS_MMC_HS200 (1 << 4)
|
|
#define EXTRA_CAPS_MMC_8BIT (1 << 5)
|
|
u32 extra_caps;
|
|
|
|
#define IC_VER_A 0
|
|
#define IC_VER_B 1
|
|
#define IC_VER_C 2
|
|
#define IC_VER_D 3
|
|
u8 ic_version;
|
|
|
|
const u32 *sd_pull_ctl_enable_tbl;
|
|
const u32 *sd_pull_ctl_disable_tbl;
|
|
const u32 *ms_pull_ctl_enable_tbl;
|
|
const u32 *ms_pull_ctl_disable_tbl;
|
|
|
|
const struct pcr_ops *ops;
|
|
enum PDEV_STAT state;
|
|
|
|
int num_slots;
|
|
struct rtsx_slot *slots;
|
|
};
|
|
|
|
#define CHK_PCI_PID(pcr, pid) ((pcr)->pci->device == (pid))
|
|
#define PCI_VID(pcr) ((pcr)->pci->vendor)
|
|
#define PCI_PID(pcr) ((pcr)->pci->device)
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|
|
|
void rtsx_pci_start_run(struct rtsx_pcr *pcr);
|
|
int rtsx_pci_write_register(struct rtsx_pcr *pcr, u16 addr, u8 mask, u8 data);
|
|
int rtsx_pci_read_register(struct rtsx_pcr *pcr, u16 addr, u8 *data);
|
|
int rtsx_pci_write_phy_register(struct rtsx_pcr *pcr, u8 addr, u16 val);
|
|
int rtsx_pci_read_phy_register(struct rtsx_pcr *pcr, u8 addr, u16 *val);
|
|
void rtsx_pci_stop_cmd(struct rtsx_pcr *pcr);
|
|
void rtsx_pci_add_cmd(struct rtsx_pcr *pcr,
|
|
u8 cmd_type, u16 reg_addr, u8 mask, u8 data);
|
|
void rtsx_pci_send_cmd_no_wait(struct rtsx_pcr *pcr);
|
|
int rtsx_pci_send_cmd(struct rtsx_pcr *pcr, int timeout);
|
|
int rtsx_pci_transfer_data(struct rtsx_pcr *pcr, struct scatterlist *sglist,
|
|
int num_sg, bool read, int timeout);
|
|
int rtsx_pci_read_ppbuf(struct rtsx_pcr *pcr, u8 *buf, int buf_len);
|
|
int rtsx_pci_write_ppbuf(struct rtsx_pcr *pcr, u8 *buf, int buf_len);
|
|
int rtsx_pci_card_pull_ctl_enable(struct rtsx_pcr *pcr, int card);
|
|
int rtsx_pci_card_pull_ctl_disable(struct rtsx_pcr *pcr, int card);
|
|
int rtsx_pci_switch_clock(struct rtsx_pcr *pcr, unsigned int card_clock,
|
|
u8 ssc_depth, bool initial_mode, bool double_clk, bool vpclk);
|
|
int rtsx_pci_card_power_on(struct rtsx_pcr *pcr, int card);
|
|
int rtsx_pci_card_power_off(struct rtsx_pcr *pcr, int card);
|
|
unsigned int rtsx_pci_card_exist(struct rtsx_pcr *pcr);
|
|
void rtsx_pci_complete_unfinished_transfer(struct rtsx_pcr *pcr);
|
|
|
|
static inline u8 *rtsx_pci_get_cmd_data(struct rtsx_pcr *pcr)
|
|
{
|
|
return (u8 *)(pcr->host_cmds_ptr);
|
|
}
|
|
|
|
#endif
|