mirror of
https://github.com/AsahiLinux/u-boot
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25aed77f51
This variable was incorrectly added by:
"mmc: zynq_sdhci: Add support for SD3.0"
(sha1: d1f4e39d58
)
which had nothing to do with MMC power sequence provider.
Signed-off-by: Michal Simek <michal.simek@xilinx.com>
334 lines
7.8 KiB
C
334 lines
7.8 KiB
C
// SPDX-License-Identifier: GPL-2.0+
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/*
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* (C) Copyright 2013 - 2015 Xilinx, Inc.
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*
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* Xilinx Zynq SD Host Controller Interface
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*/
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#include <clk.h>
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#include <common.h>
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#include <dm.h>
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#include <fdtdec.h>
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#include "mmc_private.h"
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#include <linux/libfdt.h>
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#include <malloc.h>
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#include <sdhci.h>
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#include <zynqmp_tap_delay.h>
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DECLARE_GLOBAL_DATA_PTR;
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struct arasan_sdhci_plat {
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struct mmc_config cfg;
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struct mmc mmc;
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unsigned int f_max;
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};
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struct arasan_sdhci_priv {
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struct sdhci_host *host;
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u8 deviceid;
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u8 bank;
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u8 no_1p8;
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};
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#if defined(CONFIG_ARCH_ZYNQMP)
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#define MMC_HS200_BUS_SPEED 5
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static const u8 mode2timing[] = {
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[MMC_LEGACY] = UHS_SDR12_BUS_SPEED,
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[SD_LEGACY] = UHS_SDR12_BUS_SPEED,
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[MMC_HS] = HIGH_SPEED_BUS_SPEED,
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[SD_HS] = HIGH_SPEED_BUS_SPEED,
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[MMC_HS_52] = HIGH_SPEED_BUS_SPEED,
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[MMC_DDR_52] = HIGH_SPEED_BUS_SPEED,
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[UHS_SDR12] = UHS_SDR12_BUS_SPEED,
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[UHS_SDR25] = UHS_SDR25_BUS_SPEED,
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[UHS_SDR50] = UHS_SDR50_BUS_SPEED,
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[UHS_DDR50] = UHS_DDR50_BUS_SPEED,
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[UHS_SDR104] = UHS_SDR104_BUS_SPEED,
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[MMC_HS_200] = MMC_HS200_BUS_SPEED,
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};
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#define SDHCI_HOST_CTRL2 0x3E
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#define SDHCI_CTRL2_MODE_MASK 0x7
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#define SDHCI_18V_SIGNAL 0x8
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#define SDHCI_CTRL_EXEC_TUNING 0x0040
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#define SDHCI_CTRL_TUNED_CLK 0x80
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#define SDHCI_TUNING_LOOP_COUNT 40
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static void arasan_zynqmp_dll_reset(struct sdhci_host *host, u8 deviceid)
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{
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u16 clk;
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unsigned long timeout;
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clk = sdhci_readw(host, SDHCI_CLOCK_CONTROL);
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clk &= ~(SDHCI_CLOCK_CARD_EN);
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sdhci_writew(host, clk, SDHCI_CLOCK_CONTROL);
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/* Issue DLL Reset */
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zynqmp_dll_reset(deviceid);
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/* Wait max 20 ms */
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timeout = 100;
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while (!((clk = sdhci_readw(host, SDHCI_CLOCK_CONTROL))
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& SDHCI_CLOCK_INT_STABLE)) {
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if (timeout == 0) {
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dev_err(mmc_dev(host->mmc),
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": Internal clock never stabilised.\n");
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return;
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}
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timeout--;
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udelay(1000);
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}
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clk |= SDHCI_CLOCK_CARD_EN;
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sdhci_writew(host, clk, SDHCI_CLOCK_CONTROL);
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}
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static int arasan_sdhci_execute_tuning(struct mmc *mmc, u8 opcode)
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{
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struct mmc_cmd cmd;
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struct mmc_data data;
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u32 ctrl;
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struct sdhci_host *host;
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struct arasan_sdhci_priv *priv = dev_get_priv(mmc->dev);
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char tuning_loop_counter = SDHCI_TUNING_LOOP_COUNT;
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u8 deviceid;
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debug("%s\n", __func__);
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host = priv->host;
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deviceid = priv->deviceid;
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ctrl = sdhci_readw(host, SDHCI_HOST_CTRL2);
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ctrl |= SDHCI_CTRL_EXEC_TUNING;
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sdhci_writew(host, ctrl, SDHCI_HOST_CTRL2);
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mdelay(1);
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arasan_zynqmp_dll_reset(host, deviceid);
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sdhci_writel(host, SDHCI_INT_DATA_AVAIL, SDHCI_INT_ENABLE);
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sdhci_writel(host, SDHCI_INT_DATA_AVAIL, SDHCI_SIGNAL_ENABLE);
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do {
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cmd.cmdidx = opcode;
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cmd.resp_type = MMC_RSP_R1;
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cmd.cmdarg = 0;
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data.blocksize = 64;
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data.blocks = 1;
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data.flags = MMC_DATA_READ;
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if (tuning_loop_counter-- == 0)
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break;
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if (cmd.cmdidx == MMC_CMD_SEND_TUNING_BLOCK_HS200 &&
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mmc->bus_width == 8)
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data.blocksize = 128;
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sdhci_writew(host, SDHCI_MAKE_BLKSZ(SDHCI_DEFAULT_BOUNDARY_ARG,
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data.blocksize),
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SDHCI_BLOCK_SIZE);
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sdhci_writew(host, data.blocks, SDHCI_BLOCK_COUNT);
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sdhci_writew(host, SDHCI_TRNS_READ, SDHCI_TRANSFER_MODE);
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mmc_send_cmd(mmc, &cmd, NULL);
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ctrl = sdhci_readw(host, SDHCI_HOST_CTRL2);
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if (cmd.cmdidx == MMC_CMD_SEND_TUNING_BLOCK)
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udelay(1);
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} while (ctrl & SDHCI_CTRL_EXEC_TUNING);
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if (tuning_loop_counter < 0) {
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ctrl &= ~SDHCI_CTRL_TUNED_CLK;
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sdhci_writel(host, ctrl, SDHCI_HOST_CTRL2);
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}
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if (!(ctrl & SDHCI_CTRL_TUNED_CLK)) {
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printf("%s:Tuning failed\n", __func__);
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return -1;
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}
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udelay(1);
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arasan_zynqmp_dll_reset(host, deviceid);
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/* Enable only interrupts served by the SD controller */
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sdhci_writel(host, SDHCI_INT_DATA_MASK | SDHCI_INT_CMD_MASK,
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SDHCI_INT_ENABLE);
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/* Mask all sdhci interrupt sources */
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sdhci_writel(host, 0x0, SDHCI_SIGNAL_ENABLE);
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return 0;
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}
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static void arasan_sdhci_set_tapdelay(struct sdhci_host *host)
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{
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struct arasan_sdhci_priv *priv = dev_get_priv(host->mmc->dev);
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struct mmc *mmc = (struct mmc *)host->mmc;
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u8 uhsmode;
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uhsmode = mode2timing[mmc->selected_mode];
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if (uhsmode >= UHS_SDR25_BUS_SPEED)
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arasan_zynqmp_set_tapdelay(priv->deviceid, uhsmode,
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priv->bank);
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}
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static void arasan_sdhci_set_control_reg(struct sdhci_host *host)
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{
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struct mmc *mmc = (struct mmc *)host->mmc;
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u32 reg;
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if (!IS_SD(mmc))
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return;
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if (mmc->signal_voltage == MMC_SIGNAL_VOLTAGE_180) {
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reg = sdhci_readw(host, SDHCI_HOST_CTRL2);
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reg |= SDHCI_18V_SIGNAL;
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sdhci_writew(host, reg, SDHCI_HOST_CTRL2);
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}
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if (mmc->selected_mode > SD_HS &&
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mmc->selected_mode <= UHS_DDR50) {
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reg = sdhci_readw(host, SDHCI_HOST_CTRL2);
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reg &= ~SDHCI_CTRL2_MODE_MASK;
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switch (mmc->selected_mode) {
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case UHS_SDR12:
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reg |= UHS_SDR12_BUS_SPEED;
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break;
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case UHS_SDR25:
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reg |= UHS_SDR25_BUS_SPEED;
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break;
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case UHS_SDR50:
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reg |= UHS_SDR50_BUS_SPEED;
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break;
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case UHS_SDR104:
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reg |= UHS_SDR104_BUS_SPEED;
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break;
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case UHS_DDR50:
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reg |= UHS_DDR50_BUS_SPEED;
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break;
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default:
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break;
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}
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sdhci_writew(host, reg, SDHCI_HOST_CTRL2);
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}
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}
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#endif
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#if defined(CONFIG_DM_MMC) && defined(CONFIG_ARCH_ZYNQMP)
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const struct sdhci_ops arasan_ops = {
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.platform_execute_tuning = &arasan_sdhci_execute_tuning,
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.set_delay = &arasan_sdhci_set_tapdelay,
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.set_control_reg = &arasan_sdhci_set_control_reg,
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};
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#endif
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static int arasan_sdhci_probe(struct udevice *dev)
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{
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struct arasan_sdhci_plat *plat = dev_get_platdata(dev);
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struct mmc_uclass_priv *upriv = dev_get_uclass_priv(dev);
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struct arasan_sdhci_priv *priv = dev_get_priv(dev);
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struct sdhci_host *host;
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struct clk clk;
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unsigned long clock;
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int ret;
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host = priv->host;
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ret = clk_get_by_index(dev, 0, &clk);
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if (ret < 0) {
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dev_err(dev, "failed to get clock\n");
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return ret;
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}
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clock = clk_get_rate(&clk);
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if (IS_ERR_VALUE(clock)) {
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dev_err(dev, "failed to get rate\n");
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return clock;
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}
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debug("%s: CLK %ld\n", __func__, clock);
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ret = clk_enable(&clk);
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if (ret && ret != -ENOSYS) {
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dev_err(dev, "failed to enable clock\n");
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return ret;
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}
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host->quirks = SDHCI_QUIRK_WAIT_SEND_CMD |
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SDHCI_QUIRK_BROKEN_R1B;
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#ifdef CONFIG_ZYNQ_HISPD_BROKEN
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host->quirks |= SDHCI_QUIRK_BROKEN_HISPD_MODE;
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#endif
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if (priv->no_1p8)
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host->quirks |= SDHCI_QUIRK_NO_1_8_V;
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host->max_clk = clock;
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ret = sdhci_setup_cfg(&plat->cfg, host, plat->f_max,
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CONFIG_ZYNQ_SDHCI_MIN_FREQ);
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host->mmc = &plat->mmc;
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if (ret)
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return ret;
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host->mmc->priv = host;
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host->mmc->dev = dev;
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upriv->mmc = host->mmc;
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return sdhci_probe(dev);
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}
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static int arasan_sdhci_ofdata_to_platdata(struct udevice *dev)
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{
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struct arasan_sdhci_plat *plat = dev_get_platdata(dev);
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struct arasan_sdhci_priv *priv = dev_get_priv(dev);
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priv->host = calloc(1, sizeof(struct sdhci_host));
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if (!priv->host)
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return -1;
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priv->host->name = dev->name;
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#if defined(CONFIG_DM_MMC) && defined(CONFIG_ARCH_ZYNQMP)
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priv->host->ops = &arasan_ops;
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#endif
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priv->host->ioaddr = (void *)dev_read_addr(dev);
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if (IS_ERR(priv->host->ioaddr))
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return PTR_ERR(priv->host->ioaddr);
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priv->deviceid = dev_read_u32_default(dev, "xlnx,device_id", -1);
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priv->bank = dev_read_u32_default(dev, "xlnx,mio_bank", -1);
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priv->no_1p8 = dev_read_bool(dev, "no-1-8-v");
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plat->f_max = dev_read_u32_default(dev, "max-frequency",
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CONFIG_ZYNQ_SDHCI_MAX_FREQ);
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return 0;
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}
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static int arasan_sdhci_bind(struct udevice *dev)
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{
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struct arasan_sdhci_plat *plat = dev_get_platdata(dev);
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return sdhci_bind(dev, &plat->mmc, &plat->cfg);
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}
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static const struct udevice_id arasan_sdhci_ids[] = {
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{ .compatible = "arasan,sdhci-8.9a" },
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{ }
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};
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U_BOOT_DRIVER(arasan_sdhci_drv) = {
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.name = "arasan_sdhci",
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.id = UCLASS_MMC,
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.of_match = arasan_sdhci_ids,
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.ofdata_to_platdata = arasan_sdhci_ofdata_to_platdata,
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.ops = &sdhci_ops,
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.bind = arasan_sdhci_bind,
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.probe = arasan_sdhci_probe,
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.priv_auto_alloc_size = sizeof(struct arasan_sdhci_priv),
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.platdata_auto_alloc_size = sizeof(struct arasan_sdhci_plat),
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};
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