6bfca5031b
MMC1 is available in profile 2 on the GP EVM and is exposed on the expansion header on beaglebone. Signed-off-by: Tom Rini <trini@ti.com>
445 lines
11 KiB
C
445 lines
11 KiB
C
/*
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* mux.c
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*
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* Copyright (C) 2011 Texas Instruments Incorporated - http://www.ti.com/
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*
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* This program is free software; you can redistribute it and/or
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* modify it under the terms of the GNU General Public License as
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* published by the Free Software Foundation version 2.
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*
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* This program is distributed "as is" WITHOUT ANY WARRANTY of any
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* kind, whether express or implied; without even the implied warranty
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* of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*/
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#include <common.h>
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#include <asm/arch/sys_proto.h>
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#include <asm/arch/hardware.h>
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#include <asm/io.h>
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#include <i2c.h>
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#define MUX_CFG(value, offset) \
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__raw_writel(value, (CTRL_BASE + offset));
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/* PAD Control Fields */
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#define SLEWCTRL (0x1 << 6)
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#define RXACTIVE (0x1 << 5)
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#define PULLUP_EN (0x1 << 4) /* Pull UP Selection */
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#define PULLUDEN (0x0 << 3) /* Pull up enabled */
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#define PULLUDDIS (0x1 << 3) /* Pull up disabled */
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#define MODE(val) val /* used for Readability */
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/*
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* PAD CONTROL OFFSETS
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* Field names corresponds to the pad signal name
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*/
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struct pad_signals {
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int gpmc_ad0;
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int gpmc_ad1;
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int gpmc_ad2;
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int gpmc_ad3;
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int gpmc_ad4;
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int gpmc_ad5;
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int gpmc_ad6;
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int gpmc_ad7;
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int gpmc_ad8;
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int gpmc_ad9;
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int gpmc_ad10;
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int gpmc_ad11;
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int gpmc_ad12;
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int gpmc_ad13;
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int gpmc_ad14;
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int gpmc_ad15;
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int gpmc_a0;
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int gpmc_a1;
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int gpmc_a2;
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int gpmc_a3;
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int gpmc_a4;
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int gpmc_a5;
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int gpmc_a6;
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int gpmc_a7;
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int gpmc_a8;
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int gpmc_a9;
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int gpmc_a10;
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int gpmc_a11;
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int gpmc_wait0;
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int gpmc_wpn;
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int gpmc_be1n;
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int gpmc_csn0;
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int gpmc_csn1;
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int gpmc_csn2;
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int gpmc_csn3;
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int gpmc_clk;
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int gpmc_advn_ale;
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int gpmc_oen_ren;
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int gpmc_wen;
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int gpmc_be0n_cle;
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int lcd_data0;
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int lcd_data1;
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int lcd_data2;
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int lcd_data3;
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int lcd_data4;
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int lcd_data5;
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int lcd_data6;
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int lcd_data7;
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int lcd_data8;
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int lcd_data9;
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int lcd_data10;
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int lcd_data11;
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int lcd_data12;
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int lcd_data13;
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int lcd_data14;
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int lcd_data15;
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int lcd_vsync;
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int lcd_hsync;
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int lcd_pclk;
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int lcd_ac_bias_en;
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int mmc0_dat3;
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int mmc0_dat2;
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int mmc0_dat1;
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int mmc0_dat0;
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int mmc0_clk;
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int mmc0_cmd;
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int mii1_col;
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int mii1_crs;
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int mii1_rxerr;
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int mii1_txen;
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int mii1_rxdv;
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int mii1_txd3;
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int mii1_txd2;
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int mii1_txd1;
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int mii1_txd0;
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int mii1_txclk;
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int mii1_rxclk;
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int mii1_rxd3;
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int mii1_rxd2;
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int mii1_rxd1;
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int mii1_rxd0;
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int rmii1_refclk;
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int mdio_data;
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int mdio_clk;
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int spi0_sclk;
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int spi0_d0;
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int spi0_d1;
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int spi0_cs0;
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int spi0_cs1;
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int ecap0_in_pwm0_out;
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int uart0_ctsn;
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int uart0_rtsn;
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int uart0_rxd;
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int uart0_txd;
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int uart1_ctsn;
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int uart1_rtsn;
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int uart1_rxd;
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int uart1_txd;
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int i2c0_sda;
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int i2c0_scl;
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int mcasp0_aclkx;
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int mcasp0_fsx;
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int mcasp0_axr0;
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int mcasp0_ahclkr;
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int mcasp0_aclkr;
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int mcasp0_fsr;
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int mcasp0_axr1;
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int mcasp0_ahclkx;
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int xdma_event_intr0;
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int xdma_event_intr1;
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int nresetin_out;
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int porz;
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int nnmi;
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int osc0_in;
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int osc0_out;
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int rsvd1;
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int tms;
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int tdi;
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int tdo;
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int tck;
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int ntrst;
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int emu0;
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int emu1;
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int osc1_in;
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int osc1_out;
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int pmic_power_en;
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int rtc_porz;
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int rsvd2;
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int ext_wakeup;
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int enz_kaldo_1p8v;
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int usb0_dm;
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int usb0_dp;
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int usb0_ce;
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int usb0_id;
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int usb0_vbus;
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int usb0_drvvbus;
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int usb1_dm;
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int usb1_dp;
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int usb1_ce;
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int usb1_id;
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int usb1_vbus;
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int usb1_drvvbus;
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int ddr_resetn;
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int ddr_csn0;
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int ddr_cke;
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int ddr_ck;
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int ddr_nck;
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int ddr_casn;
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int ddr_rasn;
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int ddr_wen;
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int ddr_ba0;
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int ddr_ba1;
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int ddr_ba2;
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int ddr_a0;
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int ddr_a1;
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int ddr_a2;
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int ddr_a3;
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int ddr_a4;
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int ddr_a5;
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int ddr_a6;
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int ddr_a7;
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int ddr_a8;
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int ddr_a9;
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int ddr_a10;
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int ddr_a11;
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int ddr_a12;
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int ddr_a13;
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int ddr_a14;
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int ddr_a15;
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int ddr_odt;
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int ddr_d0;
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int ddr_d1;
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int ddr_d2;
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int ddr_d3;
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int ddr_d4;
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int ddr_d5;
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int ddr_d6;
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int ddr_d7;
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int ddr_d8;
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int ddr_d9;
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int ddr_d10;
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int ddr_d11;
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int ddr_d12;
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int ddr_d13;
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int ddr_d14;
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int ddr_d15;
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int ddr_dqm0;
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int ddr_dqm1;
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int ddr_dqs0;
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int ddr_dqsn0;
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int ddr_dqs1;
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int ddr_dqsn1;
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int ddr_vref;
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int ddr_vtp;
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int ddr_strben0;
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int ddr_strben1;
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int ain7;
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int ain6;
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int ain5;
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int ain4;
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int ain3;
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int ain2;
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int ain1;
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int ain0;
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int vrefp;
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int vrefn;
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};
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struct module_pin_mux {
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short reg_offset;
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unsigned char val;
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};
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/* Pad control register offset */
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#define PAD_CTRL_BASE 0x800
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#define OFFSET(x) (unsigned int) (&((struct pad_signals *) \
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(PAD_CTRL_BASE))->x)
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static struct module_pin_mux uart0_pin_mux[] = {
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{OFFSET(uart0_rxd), (MODE(0) | PULLUP_EN | RXACTIVE)}, /* UART0_RXD */
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{OFFSET(uart0_txd), (MODE(0) | PULLUDEN)}, /* UART0_TXD */
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{-1},
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};
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static struct module_pin_mux mmc0_pin_mux[] = {
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{OFFSET(mmc0_dat3), (MODE(0) | RXACTIVE | PULLUP_EN)}, /* MMC0_DAT3 */
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{OFFSET(mmc0_dat2), (MODE(0) | RXACTIVE | PULLUP_EN)}, /* MMC0_DAT2 */
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{OFFSET(mmc0_dat1), (MODE(0) | RXACTIVE | PULLUP_EN)}, /* MMC0_DAT1 */
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{OFFSET(mmc0_dat0), (MODE(0) | RXACTIVE | PULLUP_EN)}, /* MMC0_DAT0 */
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{OFFSET(mmc0_clk), (MODE(0) | RXACTIVE | PULLUP_EN)}, /* MMC0_CLK */
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{OFFSET(mmc0_cmd), (MODE(0) | RXACTIVE | PULLUP_EN)}, /* MMC0_CMD */
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{OFFSET(mcasp0_aclkr), (MODE(4) | RXACTIVE)}, /* MMC0_WP */
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{OFFSET(spi0_cs1), (MODE(5) | RXACTIVE | PULLUP_EN)}, /* MMC0_CD */
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{-1},
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};
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static struct module_pin_mux mmc0_pin_mux_sk_evm[] = {
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{OFFSET(mmc0_dat3), (MODE(0) | RXACTIVE | PULLUP_EN)}, /* MMC0_DAT3 */
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{OFFSET(mmc0_dat2), (MODE(0) | RXACTIVE | PULLUP_EN)}, /* MMC0_DAT2 */
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{OFFSET(mmc0_dat1), (MODE(0) | RXACTIVE | PULLUP_EN)}, /* MMC0_DAT1 */
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{OFFSET(mmc0_dat0), (MODE(0) | RXACTIVE | PULLUP_EN)}, /* MMC0_DAT0 */
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{OFFSET(mmc0_clk), (MODE(0) | RXACTIVE | PULLUP_EN)}, /* MMC0_CLK */
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{OFFSET(mmc0_cmd), (MODE(0) | RXACTIVE | PULLUP_EN)}, /* MMC0_CMD */
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{OFFSET(spi0_cs1), (MODE(5) | RXACTIVE | PULLUP_EN)}, /* MMC0_CD */
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{-1},
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};
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static struct module_pin_mux mmc1_pin_mux[] = {
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{OFFSET(gpmc_ad3), (MODE(1) | RXACTIVE | PULLUP_EN)}, /* MMC1_DAT3 */
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{OFFSET(gpmc_ad2), (MODE(1) | RXACTIVE | PULLUP_EN)}, /* MMC1_DAT2 */
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{OFFSET(gpmc_ad1), (MODE(1) | RXACTIVE | PULLUP_EN)}, /* MMC1_DAT1 */
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{OFFSET(gpmc_ad0), (MODE(1) | RXACTIVE | PULLUP_EN)}, /* MMC1_DAT0 */
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{OFFSET(gpmc_csn1), (MODE(2) | RXACTIVE | PULLUP_EN)}, /* MMC1_CLK */
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{OFFSET(gpmc_csn2), (MODE(2) | RXACTIVE | PULLUP_EN)}, /* MMC1_CMD */
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{OFFSET(gpmc_csn0), (MODE(7) | RXACTIVE | PULLUP_EN)}, /* MMC1_WP */
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{OFFSET(gpmc_advn_ale), (MODE(7) | RXACTIVE | PULLUP_EN)}, /* MMC1_CD */
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{-1},
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};
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static struct module_pin_mux i2c0_pin_mux[] = {
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{OFFSET(i2c0_sda), (MODE(0) | RXACTIVE |
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PULLUDEN | SLEWCTRL)}, /* I2C_DATA */
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{OFFSET(i2c0_scl), (MODE(0) | RXACTIVE |
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PULLUDEN | SLEWCTRL)}, /* I2C_SCLK */
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{-1},
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};
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static struct module_pin_mux i2c1_pin_mux[] = {
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{OFFSET(spi0_d1), (MODE(2) | RXACTIVE |
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PULLUDEN | SLEWCTRL)}, /* I2C_DATA */
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{OFFSET(spi0_cs0), (MODE(2) | RXACTIVE |
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PULLUDEN | SLEWCTRL)}, /* I2C_SCLK */
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{-1},
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};
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static struct module_pin_mux gpio0_7_pin_mux[] = {
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{OFFSET(ecap0_in_pwm0_out), (MODE(7) | PULLUDEN)}, /* GPIO0_7 */
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{-1},
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};
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static struct module_pin_mux rgmii1_pin_mux[] = {
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{OFFSET(mii1_txen), MODE(2)}, /* RGMII1_TCTL */
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{OFFSET(mii1_rxdv), MODE(2) | RXACTIVE}, /* RGMII1_RCTL */
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{OFFSET(mii1_txd3), MODE(2)}, /* RGMII1_TD3 */
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{OFFSET(mii1_txd2), MODE(2)}, /* RGMII1_TD2 */
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{OFFSET(mii1_txd1), MODE(2)}, /* RGMII1_TD1 */
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{OFFSET(mii1_txd0), MODE(2)}, /* RGMII1_TD0 */
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{OFFSET(mii1_txclk), MODE(2)}, /* RGMII1_TCLK */
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{OFFSET(mii1_rxclk), MODE(2) | RXACTIVE}, /* RGMII1_RCLK */
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{OFFSET(mii1_rxd3), MODE(2) | RXACTIVE}, /* RGMII1_RD3 */
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{OFFSET(mii1_rxd2), MODE(2) | RXACTIVE}, /* RGMII1_RD2 */
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{OFFSET(mii1_rxd1), MODE(2) | RXACTIVE}, /* RGMII1_RD1 */
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{OFFSET(mii1_rxd0), MODE(2) | RXACTIVE}, /* RGMII1_RD0 */
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{OFFSET(mdio_data), MODE(0) | RXACTIVE | PULLUP_EN},/* MDIO_DATA */
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{OFFSET(mdio_clk), MODE(0) | PULLUP_EN}, /* MDIO_CLK */
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{-1},
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};
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static struct module_pin_mux mii1_pin_mux[] = {
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{OFFSET(mii1_rxerr), MODE(0) | RXACTIVE}, /* MII1_RXERR */
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{OFFSET(mii1_txen), MODE(0)}, /* MII1_TXEN */
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{OFFSET(mii1_rxdv), MODE(0) | RXACTIVE}, /* MII1_RXDV */
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{OFFSET(mii1_txd3), MODE(0)}, /* MII1_TXD3 */
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{OFFSET(mii1_txd2), MODE(0)}, /* MII1_TXD2 */
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{OFFSET(mii1_txd1), MODE(0)}, /* MII1_TXD1 */
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{OFFSET(mii1_txd0), MODE(0)}, /* MII1_TXD0 */
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{OFFSET(mii1_txclk), MODE(0) | RXACTIVE}, /* MII1_TXCLK */
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{OFFSET(mii1_rxclk), MODE(0) | RXACTIVE}, /* MII1_RXCLK */
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{OFFSET(mii1_rxd3), MODE(0) | RXACTIVE}, /* MII1_RXD3 */
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{OFFSET(mii1_rxd2), MODE(0) | RXACTIVE}, /* MII1_RXD2 */
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{OFFSET(mii1_rxd1), MODE(0) | RXACTIVE}, /* MII1_RXD1 */
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{OFFSET(mii1_rxd0), MODE(0) | RXACTIVE}, /* MII1_RXD0 */
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{OFFSET(mdio_data), MODE(0) | RXACTIVE | PULLUP_EN}, /* MDIO_DATA */
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{OFFSET(mdio_clk), MODE(0) | PULLUP_EN}, /* MDIO_CLK */
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{-1},
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};
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/*
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* Configure the pin mux for the module
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*/
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static void configure_module_pin_mux(struct module_pin_mux *mod_pin_mux)
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{
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int i;
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if (!mod_pin_mux)
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return;
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for (i = 0; mod_pin_mux[i].reg_offset != -1; i++)
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MUX_CFG(mod_pin_mux[i].val, mod_pin_mux[i].reg_offset);
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}
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void enable_uart0_pin_mux(void)
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{
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configure_module_pin_mux(uart0_pin_mux);
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}
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void enable_i2c0_pin_mux(void)
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{
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configure_module_pin_mux(i2c0_pin_mux);
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}
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/*
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* The AM335x GP EVM, if daughter card(s) are connected, can have 8
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* different profiles. These profiles determine what peripherals are
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* valid and need pinmux to be configured.
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*/
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#define PROFILE_NONE 0x0
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#define PROFILE_0 (1 << 0)
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#define PROFILE_1 (1 << 1)
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#define PROFILE_2 (1 << 2)
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#define PROFILE_3 (1 << 3)
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#define PROFILE_4 (1 << 4)
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#define PROFILE_5 (1 << 5)
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#define PROFILE_6 (1 << 6)
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#define PROFILE_7 (1 << 7)
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#define PROFILE_MASK 0x7
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#define PROFILE_ALL 0xFF
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/* CPLD registers */
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#define I2C_CPLD_ADDR 0x35
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#define CFG_REG 0x10
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static unsigned short detect_daughter_board_profile(void)
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{
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unsigned short val;
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if (i2c_probe(I2C_CPLD_ADDR))
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return PROFILE_NONE;
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if (i2c_read(I2C_CPLD_ADDR, CFG_REG, 1, (unsigned char *)(&val), 2))
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return PROFILE_NONE;
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return (1 << (val & PROFILE_MASK));
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}
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void enable_board_pin_mux(struct am335x_baseboard_id *header)
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{
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/* Do board-specific muxes. */
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if (!strncmp(header->name, "A335BONE", HDR_NAME_LEN)) {
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/* Beaglebone pinmux */
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configure_module_pin_mux(i2c1_pin_mux);
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configure_module_pin_mux(mii1_pin_mux);
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configure_module_pin_mux(mmc0_pin_mux);
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configure_module_pin_mux(mmc1_pin_mux);
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} else if (!strncmp(header->config, "SKU#01", 6)) {
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/* General Purpose EVM */
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unsigned short profile = detect_daughter_board_profile();
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configure_module_pin_mux(rgmii1_pin_mux);
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configure_module_pin_mux(mmc0_pin_mux);
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/* In profile #2 i2c1 and spi0 conflict. */
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if (profile & ~PROFILE_2)
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configure_module_pin_mux(i2c1_pin_mux);
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else if (profile == PROFILE_2) {
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configure_module_pin_mux(mmc1_pin_mux);
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}
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} else if (!strncmp(header->name, "A335X_SK", HDR_NAME_LEN)) {
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/* Starter Kit EVM */
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configure_module_pin_mux(i2c1_pin_mux);
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configure_module_pin_mux(gpio0_7_pin_mux);
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configure_module_pin_mux(rgmii1_pin_mux);
|
|
configure_module_pin_mux(mmc0_pin_mux_sk_evm);
|
|
} else {
|
|
puts("Unknown board, cannot configure pinmux.");
|
|
hang();
|
|
}
|
|
}
|