mirror of
https://github.com/AsahiLinux/u-boot
synced 2024-11-08 22:24:32 +00:00
35b65dd8ef
Historically, the reset_cpu() function had an `addr` parameter which was meant to pass in an address of the reset vector location, where the CPU should reset to. This feature is no longer used anywhere in U-Boot as all reset_cpu() implementations now ignore the passed value. Generic code has been added which always calls reset_cpu() with `0` which means this feature can no longer be used easily anyway. Over time, many implementations seem to have "misunderstood" the existence of this parameter as a way to customize/parameterize the reset (e.g. COLD vs WARM resets). As this is not properly supported, the code will almost always not do what it is intended to (because all call-sites just call reset_cpu() with 0). To avoid confusion and to clean up the codebase from unused left-overs of the past, remove the `addr` parameter entirely. Code which intends to support different kinds of resets should be rewritten as a sysreset driver instead. This transformation was done with the following coccinelle patch: @@ expression argvalue; @@ - reset_cpu(argvalue) + reset_cpu() @@ identifier argname; type argtype; @@ - reset_cpu(argtype argname) + reset_cpu(void) { ... } Signed-off-by: Harald Seiler <hws@denx.de> Reviewed-by: Simon Glass <sjg@chromium.org>
167 lines
3.9 KiB
C
167 lines
3.9 KiB
C
// SPDX-License-Identifier: GPL-2.0+
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/*
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* Copyright (C) 2018 Technexion Ltd.
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*
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* Author: Richard Hu <richard.hu@technexion.com>
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*/
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#include <common.h>
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#include <cpu_func.h>
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#include <init.h>
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#include <asm/arch/clock.h>
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#include <asm/arch/imx-regs.h>
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#include <asm/arch/crm_regs.h>
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#include <asm/arch/mx7-pins.h>
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#include <asm/arch/sys_proto.h>
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#include <asm/arch-mx7/mx7-ddr.h>
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#include <asm/mach-imx/iomux-v3.h>
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#include <asm/gpio.h>
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#include <fsl_esdhc_imx.h>
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#include <spl.h>
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#if defined(CONFIG_SPL_BUILD)
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#ifdef CONFIG_SPL_OS_BOOT
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int spl_start_uboot(void)
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{
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/* Break into full U-Boot on 'c' */
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if (serial_tstc() && serial_getc() == 'c')
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return 1;
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return 0;
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}
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#endif
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static struct ddrc ddrc_regs_val = {
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.mstr = 0x01040001,
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.rfshtmg = 0x00400046,
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.init1 = 0x00690000,
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.init0 = 0x00020083,
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.init3 = 0x09300004,
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.init4 = 0x04080000,
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.init5 = 0x00100004,
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.rankctl = 0x0000033F,
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.dramtmg0 = 0x09081109,
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.dramtmg1 = 0x0007020d,
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.dramtmg2 = 0x03040407,
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.dramtmg3 = 0x00002006,
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.dramtmg4 = 0x04020205,
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.dramtmg5 = 0x03030202,
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.dramtmg8 = 0x00000803,
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.zqctl0 = 0x00800020,
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.dfitmg0 = 0x02098204,
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.dfitmg1 = 0x00030303,
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.dfiupd0 = 0x80400003,
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.dfiupd1 = 0x00100020,
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.dfiupd2 = 0x80100004,
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.addrmap4 = 0x00000F0F,
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.odtcfg = 0x06000604,
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.odtmap = 0x00000001,
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.rfshtmg = 0x00400046,
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.dramtmg0 = 0x09081109,
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.addrmap0 = 0x0000001f,
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.addrmap1 = 0x00080808,
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.addrmap4 = 0x00000f0f,
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.addrmap5 = 0x07070707,
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.addrmap6 = 0x0f0f0707,
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};
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static struct ddrc_mp ddrc_mp_val = {
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.pctrl_0 = 0x00000001,
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};
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static struct ddr_phy ddr_phy_regs_val = {
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.phy_con0 = 0x17420f40,
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.phy_con1 = 0x10210100,
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.phy_con4 = 0x00060807,
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.mdll_con0 = 0x1010007e,
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.drvds_con0 = 0x00000d6e,
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.cmd_sdll_con0 = 0x00000010,
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.offset_lp_con0 = 0x0000000f,
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.offset_rd_con0 = 0x08080808,
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.offset_wr_con0 = 0x08080808,
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};
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static struct mx7_calibration calib_param = {
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.num_val = 5,
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.values = {
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0x0E407304,
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0x0E447304,
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0x0E447306,
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0x0E447304,
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0x0E447304,
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},
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};
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static void gpr_init(void)
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{
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struct iomuxc_gpr_base_regs *gpr_regs =
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(struct iomuxc_gpr_base_regs *)IOMUXC_GPR_BASE_ADDR;
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writel(0x4F400005, &gpr_regs->gpr[1]);
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}
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static bool is_1g(void)
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{
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gpio_direction_input(IMX_GPIO_NR(1, 12));
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return !gpio_get_value(IMX_GPIO_NR(1, 12));
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}
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static void ddr_init(void)
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{
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if (is_1g())
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ddrc_regs_val.addrmap6 = 0x0f070707;
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mx7_dram_cfg(&ddrc_regs_val, &ddrc_mp_val, &ddr_phy_regs_val,
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&calib_param);
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}
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void board_init_f(ulong dummy)
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{
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arch_cpu_init();
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gpr_init();
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board_early_init_f();
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timer_init();
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preloader_console_init();
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ddr_init();
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memset(__bss_start, 0, __bss_end - __bss_start);
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board_init_r(NULL, 0);
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}
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void reset_cpu(void)
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{
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}
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#define USDHC_PAD_CTRL (PAD_CTL_DSE_3P3V_32OHM | PAD_CTL_SRE_SLOW | \
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PAD_CTL_HYS | PAD_CTL_PUE | PAD_CTL_PUS_PU47KOHM)
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static iomux_v3_cfg_t const usdhc3_pads[] = {
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MX7D_PAD_SD3_CLK__SD3_CLK | MUX_PAD_CTRL(USDHC_PAD_CTRL),
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MX7D_PAD_SD3_CMD__SD3_CMD | MUX_PAD_CTRL(USDHC_PAD_CTRL),
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MX7D_PAD_SD3_DATA0__SD3_DATA0 | MUX_PAD_CTRL(USDHC_PAD_CTRL),
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MX7D_PAD_SD3_DATA1__SD3_DATA1 | MUX_PAD_CTRL(USDHC_PAD_CTRL),
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MX7D_PAD_SD3_DATA2__SD3_DATA2 | MUX_PAD_CTRL(USDHC_PAD_CTRL),
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MX7D_PAD_SD3_DATA3__SD3_DATA3 | MUX_PAD_CTRL(USDHC_PAD_CTRL),
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MX7D_PAD_SD3_DATA4__SD3_DATA4 | MUX_PAD_CTRL(USDHC_PAD_CTRL),
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MX7D_PAD_SD3_DATA5__SD3_DATA5 | MUX_PAD_CTRL(USDHC_PAD_CTRL),
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MX7D_PAD_SD3_DATA6__SD3_DATA6 | MUX_PAD_CTRL(USDHC_PAD_CTRL),
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MX7D_PAD_SD3_DATA7__SD3_DATA7 | MUX_PAD_CTRL(USDHC_PAD_CTRL),
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MX7D_PAD_GPIO1_IO14__GPIO1_IO14 | MUX_PAD_CTRL(USDHC_PAD_CTRL),
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};
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static struct fsl_esdhc_cfg usdhc_cfg[1] = {
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{USDHC3_BASE_ADDR},
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};
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int board_mmc_getcd(struct mmc *mmc)
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{
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/* Assume uSDHC3 emmc is always present */
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return 1;
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}
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int board_mmc_init(struct bd_info *bis)
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{
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imx_iomux_v3_setup_multiple_pads(usdhc3_pads, ARRAY_SIZE(usdhc3_pads));
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usdhc_cfg[0].sdhc_clk = mxc_get_clock(MXC_ESDHC3_CLK);
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return fsl_esdhc_initialize(bis, &usdhc_cfg[0]);
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}
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#endif
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