mirror of
https://github.com/AsahiLinux/u-boot
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83d290c56f
When U-Boot started using SPDX tags we were among the early adopters and there weren't a lot of other examples to borrow from. So we picked the area of the file that usually had a full license text and replaced it with an appropriate SPDX-License-Identifier: entry. Since then, the Linux Kernel has adopted SPDX tags and they place it as the very first line in a file (except where shebangs are used, then it's second line) and with slightly different comment styles than us. In part due to community overlap, in part due to better tag visibility and in part for other minor reasons, switch over to that style. This commit changes all instances where we have a single declared license in the tag as both the before and after are identical in tag contents. There's also a few places where I found we did not have a tag and have introduced one. Signed-off-by: Tom Rini <trini@konsulko.com>
363 lines
8.5 KiB
C
363 lines
8.5 KiB
C
// SPDX-License-Identifier: GPL-2.0+
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/*
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* SPL specific code for Compulab CM-FX6 board
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*
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* Copyright (C) 2014, Compulab Ltd - http://compulab.co.il/
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*
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* Author: Nikita Kiryanov <nikita@compulab.co.il>
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*/
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#include <common.h>
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#include <spl.h>
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#include <asm/io.h>
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#include <asm/gpio.h>
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#include <asm/arch/mx6-ddr.h>
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#include <asm/arch/clock.h>
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#include <asm/arch/sys_proto.h>
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#include <asm/arch/crm_regs.h>
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#include <asm/mach-imx/iomux-v3.h>
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#include <fsl_esdhc.h>
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#include "common.h"
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enum ddr_config {
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DDR_16BIT_256MB,
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DDR_32BIT_512MB,
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DDR_32BIT_1GB,
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DDR_64BIT_1GB,
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DDR_64BIT_2GB,
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DDR_64BIT_4GB,
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DDR_UNKNOWN,
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};
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/*
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* Below DRAM_RESET[DDR_SEL] = 0 which is incorrect according to
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* Freescale QRM, but this is exactly the value used by the automatic
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* calibration script and it works also in all our tests, so we leave
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* it as is at this point.
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*/
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#define CM_FX6_DDR_IOMUX_CFG \
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.dram_sdqs0 = 0x00000038, \
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.dram_sdqs1 = 0x00000038, \
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.dram_sdqs2 = 0x00000038, \
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.dram_sdqs3 = 0x00000038, \
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.dram_sdqs4 = 0x00000038, \
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.dram_sdqs5 = 0x00000038, \
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.dram_sdqs6 = 0x00000038, \
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.dram_sdqs7 = 0x00000038, \
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.dram_dqm0 = 0x00000038, \
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.dram_dqm1 = 0x00000038, \
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.dram_dqm2 = 0x00000038, \
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.dram_dqm3 = 0x00000038, \
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.dram_dqm4 = 0x00000038, \
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.dram_dqm5 = 0x00000038, \
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.dram_dqm6 = 0x00000038, \
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.dram_dqm7 = 0x00000038, \
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.dram_cas = 0x00000038, \
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.dram_ras = 0x00000038, \
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.dram_sdclk_0 = 0x00000038, \
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.dram_sdclk_1 = 0x00000038, \
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.dram_sdcke0 = 0x00003000, \
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.dram_sdcke1 = 0x00003000, \
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.dram_reset = 0x00000038, \
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.dram_sdba2 = 0x00000000, \
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.dram_sdodt0 = 0x00000038, \
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.dram_sdodt1 = 0x00000038,
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#define CM_FX6_GPR_IOMUX_CFG \
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.grp_b0ds = 0x00000038, \
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.grp_b1ds = 0x00000038, \
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.grp_b2ds = 0x00000038, \
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.grp_b3ds = 0x00000038, \
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.grp_b4ds = 0x00000038, \
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.grp_b5ds = 0x00000038, \
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.grp_b6ds = 0x00000038, \
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.grp_b7ds = 0x00000038, \
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.grp_addds = 0x00000038, \
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.grp_ddrmode_ctl = 0x00020000, \
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.grp_ddrpke = 0x00000000, \
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.grp_ddrmode = 0x00020000, \
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.grp_ctlds = 0x00000038, \
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.grp_ddr_type = 0x000C0000,
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static struct mx6sdl_iomux_ddr_regs ddr_iomux_s = { CM_FX6_DDR_IOMUX_CFG };
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static struct mx6sdl_iomux_grp_regs grp_iomux_s = { CM_FX6_GPR_IOMUX_CFG };
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static struct mx6dq_iomux_ddr_regs ddr_iomux_q = { CM_FX6_DDR_IOMUX_CFG };
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static struct mx6dq_iomux_grp_regs grp_iomux_q = { CM_FX6_GPR_IOMUX_CFG };
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static struct mx6_mmdc_calibration cm_fx6_calib_s = {
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.p0_mpwldectrl0 = 0x005B0061,
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.p0_mpwldectrl1 = 0x004F0055,
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.p0_mpdgctrl0 = 0x0314030C,
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.p0_mpdgctrl1 = 0x025C0268,
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.p0_mprddlctl = 0x42464646,
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.p0_mpwrdlctl = 0x36322C34,
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};
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static struct mx6_ddr_sysinfo cm_fx6_sysinfo_s = {
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.cs1_mirror = 1,
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.cs_density = 16,
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.bi_on = 1,
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.rtt_nom = 1,
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.rtt_wr = 0,
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.ralat = 5,
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.walat = 1,
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.mif3_mode = 3,
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.rst_to_cke = 0x23,
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.sde_to_rst = 0x10,
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};
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static struct mx6_ddr3_cfg cm_fx6_ddr3_cfg_s = {
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.mem_speed = 800,
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.density = 4,
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.rowaddr = 14,
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.coladdr = 10,
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.pagesz = 2,
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.trcd = 1800,
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.trcmin = 5200,
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.trasmin = 3600,
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.SRT = 0,
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};
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static void spl_mx6s_dram_init(enum ddr_config dram_config, bool reset)
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{
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if (reset)
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((struct mmdc_p_regs *)MX6_MMDC_P0_MDCTL)->mdmisc = 2;
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switch (dram_config) {
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case DDR_16BIT_256MB:
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cm_fx6_sysinfo_s.dsize = 0;
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cm_fx6_sysinfo_s.ncs = 1;
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break;
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case DDR_32BIT_512MB:
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cm_fx6_sysinfo_s.dsize = 1;
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cm_fx6_sysinfo_s.ncs = 1;
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break;
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case DDR_32BIT_1GB:
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cm_fx6_sysinfo_s.dsize = 1;
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cm_fx6_sysinfo_s.ncs = 2;
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break;
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default:
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puts("Tried to setup invalid DDR configuration\n");
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hang();
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}
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mx6_dram_cfg(&cm_fx6_sysinfo_s, &cm_fx6_calib_s, &cm_fx6_ddr3_cfg_s);
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udelay(100);
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}
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static struct mx6_mmdc_calibration cm_fx6_calib_q = {
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.p0_mpwldectrl0 = 0x00630068,
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.p0_mpwldectrl1 = 0x0068005D,
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.p0_mpdgctrl0 = 0x04140428,
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.p0_mpdgctrl1 = 0x037C037C,
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.p0_mprddlctl = 0x3C30303A,
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.p0_mpwrdlctl = 0x3A344038,
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.p1_mpwldectrl0 = 0x0035004C,
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.p1_mpwldectrl1 = 0x00170026,
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.p1_mpdgctrl0 = 0x0374037C,
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.p1_mpdgctrl1 = 0x0350032C,
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.p1_mprddlctl = 0x30322A3C,
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.p1_mpwrdlctl = 0x48304A3E,
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};
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static struct mx6_ddr_sysinfo cm_fx6_sysinfo_q = {
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.cs_density = 16,
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.cs1_mirror = 1,
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.bi_on = 1,
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.rtt_nom = 1,
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.rtt_wr = 0,
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.ralat = 5,
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.walat = 1,
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.mif3_mode = 3,
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.rst_to_cke = 0x23,
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.sde_to_rst = 0x10,
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.refsel = 1, /* Refresh cycles at 32KHz */
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.refr = 7, /* 8 refresh commands per refresh cycle */
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};
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static struct mx6_ddr3_cfg cm_fx6_ddr3_cfg_q = {
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.mem_speed = 1066,
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.density = 4,
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.rowaddr = 14,
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.coladdr = 10,
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.pagesz = 2,
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.trcd = 1324,
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.trcmin = 59500,
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.trasmin = 9750,
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.SRT = 0,
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};
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static void spl_mx6q_dram_init(enum ddr_config dram_config, bool reset)
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{
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if (reset)
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((struct mmdc_p_regs *)MX6_MMDC_P0_MDCTL)->mdmisc = 2;
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cm_fx6_ddr3_cfg_q.rowaddr = 14;
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switch (dram_config) {
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case DDR_16BIT_256MB:
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cm_fx6_sysinfo_q.dsize = 0;
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cm_fx6_sysinfo_q.ncs = 1;
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break;
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case DDR_32BIT_512MB:
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cm_fx6_sysinfo_q.dsize = 1;
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cm_fx6_sysinfo_q.ncs = 1;
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break;
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case DDR_64BIT_1GB:
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cm_fx6_sysinfo_q.dsize = 2;
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cm_fx6_sysinfo_q.ncs = 1;
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break;
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case DDR_64BIT_2GB:
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cm_fx6_sysinfo_q.dsize = 2;
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cm_fx6_sysinfo_q.ncs = 2;
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break;
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case DDR_64BIT_4GB:
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cm_fx6_sysinfo_q.dsize = 2;
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cm_fx6_sysinfo_q.ncs = 2;
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cm_fx6_ddr3_cfg_q.rowaddr = 15;
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break;
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default:
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puts("Tried to setup invalid DDR configuration\n");
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hang();
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}
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mx6_dram_cfg(&cm_fx6_sysinfo_q, &cm_fx6_calib_q, &cm_fx6_ddr3_cfg_q);
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udelay(100);
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}
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static int cm_fx6_spl_dram_init(void)
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{
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unsigned long bank1_size, bank2_size;
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switch (get_cpu_type()) {
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case MXC_CPU_MX6SOLO:
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mx6sdl_dram_iocfg(64, &ddr_iomux_s, &grp_iomux_s);
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spl_mx6s_dram_init(DDR_32BIT_1GB, false);
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bank1_size = get_ram_size((long int *)PHYS_SDRAM_1, 0x80000000);
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bank2_size = get_ram_size((long int *)PHYS_SDRAM_2, 0x80000000);
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if (bank1_size == 0x20000000) {
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if (bank2_size == 0x20000000)
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return 0;
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spl_mx6s_dram_init(DDR_32BIT_512MB, true);
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return 0;
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}
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spl_mx6s_dram_init(DDR_16BIT_256MB, true);
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bank1_size = get_ram_size((long int *)PHYS_SDRAM_1, 0x80000000);
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if (bank1_size == 0x10000000)
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return 0;
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break;
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case MXC_CPU_MX6D:
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case MXC_CPU_MX6Q:
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mx6dq_dram_iocfg(64, &ddr_iomux_q, &grp_iomux_q);
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spl_mx6q_dram_init(DDR_64BIT_4GB, false);
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bank1_size = get_ram_size((long int *)PHYS_SDRAM_1, 0x80000000);
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if (bank1_size == 0x80000000)
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return 0;
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if (bank1_size == 0x40000000) {
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bank2_size = get_ram_size((long int *)PHYS_SDRAM_2,
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0x80000000);
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if (bank2_size == 0x40000000) {
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/* Don't do a full reset here */
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spl_mx6q_dram_init(DDR_64BIT_2GB, false);
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} else {
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spl_mx6q_dram_init(DDR_64BIT_1GB, true);
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}
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return 0;
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}
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spl_mx6q_dram_init(DDR_32BIT_512MB, true);
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bank1_size = get_ram_size((long int *)PHYS_SDRAM_1, 0x80000000);
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if (bank1_size == 0x20000000)
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return 0;
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spl_mx6q_dram_init(DDR_16BIT_256MB, true);
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bank1_size = get_ram_size((long int *)PHYS_SDRAM_1, 0x80000000);
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if (bank1_size == 0x10000000)
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return 0;
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break;
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}
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return -1;
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}
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static iomux_v3_cfg_t const uart4_pads[] = {
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IOMUX_PADS(PAD_KEY_COL0__UART4_TX_DATA | MUX_PAD_CTRL(UART_PAD_CTRL)),
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IOMUX_PADS(PAD_KEY_ROW0__UART4_RX_DATA | MUX_PAD_CTRL(UART_PAD_CTRL)),
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};
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static void cm_fx6_setup_uart(void)
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{
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SETUP_IOMUX_PADS(uart4_pads);
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enable_uart_clk(1);
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}
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#ifdef CONFIG_SPL_SPI_SUPPORT
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static void cm_fx6_setup_ecspi(void)
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{
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cm_fx6_set_ecspi_iomux();
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enable_spi_clk(1, 0);
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}
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#else
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static void cm_fx6_setup_ecspi(void) { }
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#endif
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void board_init_f(ulong dummy)
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{
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struct mxc_ccm_reg *mxc_ccm = (struct mxc_ccm_reg *)CCM_BASE_ADDR;
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/*
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* We don't use DMA in SPL, but we do need it in U-Boot. U-Boot
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* initializes DMA very early (before all board code), so the only
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* opportunity we have to initialize APBHDMA clocks is in SPL.
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*/
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setbits_le32(&mxc_ccm->CCGR0, MXC_CCM_CCGR0_APBHDMA_MASK);
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enable_usdhc_clk(1, 2);
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arch_cpu_init();
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timer_init();
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cm_fx6_setup_ecspi();
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cm_fx6_setup_uart();
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get_clocks();
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preloader_console_init();
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gpio_direction_output(CM_FX6_GREEN_LED, 1);
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if (cm_fx6_spl_dram_init()) {
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puts("!!!ERROR!!! DRAM detection failed!!!\n");
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hang();
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}
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}
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void board_boot_order(u32 *spl_boot_list)
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{
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spl_boot_list[0] = spl_boot_device();
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switch (spl_boot_list[0]) {
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case BOOT_DEVICE_SPI:
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spl_boot_list[1] = BOOT_DEVICE_MMC1;
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break;
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case BOOT_DEVICE_MMC1:
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spl_boot_list[1] = BOOT_DEVICE_SPI;
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break;
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}
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}
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#ifdef CONFIG_SPL_MMC_SUPPORT
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static struct fsl_esdhc_cfg usdhc_cfg = {
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.esdhc_base = USDHC3_BASE_ADDR,
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.max_bus_width = 4,
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};
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int board_mmc_init(bd_t *bis)
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{
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cm_fx6_set_usdhc_iomux();
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usdhc_cfg.sdhc_clk = mxc_get_clock(MXC_ESDHC3_CLK);
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return fsl_esdhc_initialize(bis, &usdhc_cfg);
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}
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#endif
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