mirror of
https://github.com/AsahiLinux/u-boot
synced 2024-12-04 18:41:03 +00:00
2b1cdafa9f
The SPL code already knows which boot device it calls the spl_boot_mode() on, so pass that information into the function. This allows the code of spl_boot_mode() avoid invoking spl_boot_device() again, but it also lets board_boot_order() correctly alter the behavior of the boot process. The later one is important, since in certain cases, it is desired that spl_boot_device() return value be overriden using board_boot_order(). Signed-off-by: Marek Vasut <marex@denx.de> Cc: Andreas Bießmann <andreas.devel@googlemail.com> Cc: Albert Aribaud <albert.u.boot@aribaud.net> Cc: Tom Rini <trini@konsulko.com> Reviewed-by: Andreas Bießmann <andreas@biessmann.org> [add newly introduced zynq variant] Signed-aff-by: Andreas Bießmann <andreas@biessmann.org>
184 lines
4.8 KiB
C
184 lines
4.8 KiB
C
/*
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* Copyright (C) 2012 Altera Corporation <www.altera.com>
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*
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* SPDX-License-Identifier: GPL-2.0+
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*/
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#include <common.h>
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#include <asm/io.h>
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#include <asm/pl310.h>
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#include <asm/u-boot.h>
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#include <asm/utils.h>
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#include <image.h>
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#include <asm/arch/reset_manager.h>
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#include <spl.h>
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#include <asm/arch/system_manager.h>
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#include <asm/arch/freeze_controller.h>
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#include <asm/arch/clock_manager.h>
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#include <asm/arch/scan_manager.h>
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#include <asm/arch/sdram.h>
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#include <asm/arch/scu.h>
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#include <asm/arch/nic301.h>
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DECLARE_GLOBAL_DATA_PTR;
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static struct pl310_regs *const pl310 =
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(struct pl310_regs *)CONFIG_SYS_PL310_BASE;
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static struct scu_registers *scu_regs =
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(struct scu_registers *)SOCFPGA_MPUSCU_ADDRESS;
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static struct nic301_registers *nic301_regs =
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(struct nic301_registers *)SOCFPGA_L3REGS_ADDRESS;
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static struct socfpga_system_manager *sysmgr_regs =
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(struct socfpga_system_manager *)SOCFPGA_SYSMGR_ADDRESS;
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u32 spl_boot_device(void)
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{
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const u32 bsel = readl(&sysmgr_regs->bootinfo);
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switch (bsel & 0x7) {
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case 0x1: /* FPGA (HPS2FPGA Bridge) */
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return BOOT_DEVICE_RAM;
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case 0x2: /* NAND Flash (1.8V) */
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case 0x3: /* NAND Flash (3.0V) */
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socfpga_per_reset(SOCFPGA_RESET(NAND), 0);
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return BOOT_DEVICE_NAND;
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case 0x4: /* SD/MMC External Transceiver (1.8V) */
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case 0x5: /* SD/MMC Internal Transceiver (3.0V) */
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socfpga_per_reset(SOCFPGA_RESET(SDMMC), 0);
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socfpga_per_reset(SOCFPGA_RESET(DMA), 0);
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return BOOT_DEVICE_MMC1;
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case 0x6: /* QSPI Flash (1.8V) */
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case 0x7: /* QSPI Flash (3.0V) */
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socfpga_per_reset(SOCFPGA_RESET(QSPI), 0);
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return BOOT_DEVICE_SPI;
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default:
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printf("Invalid boot device (bsel=%08x)!\n", bsel);
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hang();
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}
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}
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#ifdef CONFIG_SPL_MMC_SUPPORT
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u32 spl_boot_mode(const u32 boot_device)
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{
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#if defined(CONFIG_SPL_FAT_SUPPORT) || defined(CONFIG_SPL_EXT_SUPPORT)
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return MMCSD_MODE_FS;
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#else
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return MMCSD_MODE_RAW;
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#endif
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}
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#endif
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static void socfpga_nic301_slave_ns(void)
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{
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writel(0x1, &nic301_regs->lwhps2fpgaregs);
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writel(0x1, &nic301_regs->hps2fpgaregs);
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writel(0x1, &nic301_regs->acp);
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writel(0x1, &nic301_regs->rom);
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writel(0x1, &nic301_regs->ocram);
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writel(0x1, &nic301_regs->sdrdata);
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}
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void board_init_f(ulong dummy)
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{
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#ifndef CONFIG_SOCFPGA_VIRTUAL_TARGET
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const struct cm_config *cm_default_cfg = cm_get_default_config();
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#endif
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unsigned long sdram_size;
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unsigned long reg;
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/*
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* First C code to run. Clear fake OCRAM ECC first as SBE
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* and DBE might triggered during power on
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*/
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reg = readl(&sysmgr_regs->eccgrp_ocram);
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if (reg & SYSMGR_ECC_OCRAM_SERR)
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writel(SYSMGR_ECC_OCRAM_SERR | SYSMGR_ECC_OCRAM_EN,
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&sysmgr_regs->eccgrp_ocram);
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if (reg & SYSMGR_ECC_OCRAM_DERR)
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writel(SYSMGR_ECC_OCRAM_DERR | SYSMGR_ECC_OCRAM_EN,
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&sysmgr_regs->eccgrp_ocram);
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memset(__bss_start, 0, __bss_end - __bss_start);
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socfpga_nic301_slave_ns();
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/* Configure ARM MPU SNSAC register. */
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setbits_le32(&scu_regs->sacr, 0xfff);
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/* Remap SDRAM to 0x0 */
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writel(0x1, &nic301_regs->remap); /* remap.mpuzero */
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writel(0x1, &pl310->pl310_addr_filter_start);
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#ifndef CONFIG_SOCFPGA_VIRTUAL_TARGET
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debug("Freezing all I/O banks\n");
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/* freeze all IO banks */
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sys_mgr_frzctrl_freeze_req();
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/* Put everything into reset but L4WD0. */
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socfpga_per_reset_all();
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/* Put FPGA bridges into reset too. */
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socfpga_bridges_reset(1);
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socfpga_per_reset(SOCFPGA_RESET(SDR), 0);
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socfpga_per_reset(SOCFPGA_RESET(UART0), 0);
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socfpga_per_reset(SOCFPGA_RESET(OSC1TIMER0), 0);
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timer_init();
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debug("Reconfigure Clock Manager\n");
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/* reconfigure the PLLs */
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cm_basic_init(cm_default_cfg);
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/* Enable bootrom to configure IOs. */
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sysmgr_config_warmrstcfgio(1);
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/* configure the IOCSR / IO buffer settings */
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if (scan_mgr_configure_iocsr())
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hang();
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sysmgr_config_warmrstcfgio(0);
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/* configure the pin muxing through system manager */
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sysmgr_config_warmrstcfgio(1);
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sysmgr_pinmux_init();
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sysmgr_config_warmrstcfgio(0);
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#endif /* CONFIG_SOCFPGA_VIRTUAL_TARGET */
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/* De-assert reset for peripherals and bridges based on handoff */
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reset_deassert_peripherals_handoff();
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socfpga_bridges_reset(0);
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debug("Unfreezing/Thaw all I/O banks\n");
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/* unfreeze / thaw all IO banks */
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sys_mgr_frzctrl_thaw_req();
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/* enable console uart printing */
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preloader_console_init();
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if (sdram_mmr_init_full(0xffffffff) != 0) {
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puts("SDRAM init failed.\n");
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hang();
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}
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debug("SDRAM: Calibrating PHY\n");
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/* SDRAM calibration */
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if (sdram_calibration_full() == 0) {
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puts("SDRAM calibration failed.\n");
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hang();
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}
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sdram_size = sdram_calculate_size();
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debug("SDRAM: %ld MiB\n", sdram_size >> 20);
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/* Sanity check ensure correct SDRAM size specified */
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if (get_ram_size(0, sdram_size) != sdram_size) {
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puts("SDRAM size check failed!\n");
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hang();
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}
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socfpga_bridges_reset(1);
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/* Configure simple malloc base pointer into RAM. */
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gd->malloc_base = CONFIG_SYS_TEXT_BASE + (1024 * 1024);
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}
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