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Refactor console_flush() and console_switch_state(CONSOLE_FLAG_RUNTIME) to bl31_main(). This has been done per the recommendation in TF-A mailing list. These calls need to be the last calls, after any runtime initialization has been done, before BL31 exits. All platforms that override the generic implementation of bl31_plat_runtime_setup() have been refactored. The console_flush() and console_switch_state() calls have been removed as they become part of bl31_main() function. Any platform that don't need to make any change to the generic (weak) implementation of bl31_plat_runtime_setup() don't need to override it in their platforms. Change-Id: I6d04d6daa9353daeaa7e3df9e9adf6f322a917b8 Signed-off-by: Salman Nabi <salman.nabi@arm.com>
174 lines
4.8 KiB
C
174 lines
4.8 KiB
C
/*
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* Copyright (c) 2022-2024, MediaTek Inc. All rights reserved.
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*
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* SPDX-License-Identifier: BSD-3-Clause
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*/
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#include <assert.h>
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#include <arch.h>
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#include <common/bl_common.h>
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#include <common/debug.h>
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#include <drivers/delay_timer.h>
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#include <drivers/generic_delay_timer.h>
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#if XLAT_TABLES_LIB_V2 && PLAT_XLAT_TABLES_DYNAMIC
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#include <lib/xlat_tables/xlat_tables_v2.h>
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#endif
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#include <plat/common/platform.h>
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#if COREBOOT
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#include <common/desc_image_load.h>
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#include <drivers/ti/uart/uart_16550.h>
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#include <lib/coreboot.h>
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#include <plat_params.h>
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#endif
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/* MTK headers */
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#if MTK_SIP_KERNEL_BOOT_ENABLE
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#include <cold_boot.h>
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#endif
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#include <lib/mtk_init/mtk_init.h>
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#include <mtk_mmap_pool.h>
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IMPORT_SYM(uintptr_t, __RW_START__, RW_START);
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IMPORT_SYM(uintptr_t, __DATA_START__, DATA_START);
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#if COREBOOT
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static entry_point_info_t bl32_ep_info;
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static entry_point_info_t bl33_ep_info;
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/*******************************************************************************
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* Return a pointer to the 'entry_point_info' structure of the next image for
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* the security state specified. BL33 corresponds to the non-secure image type
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* while BL32 corresponds to the secure image type. A NULL pointer is returned
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* if the image does not exist.
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******************************************************************************/
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entry_point_info_t *bl31_plat_get_next_image_ep_info(uint32_t type)
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{
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entry_point_info_t *next_image_info;
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next_image_info = (type == NON_SECURE) ? &bl33_ep_info : &bl32_ep_info;
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assert(next_image_info->h.type == PARAM_EP);
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/* None of the images on this platform can have 0x0 as the entrypoint */
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if (next_image_info->pc) {
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return next_image_info;
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} else {
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return NULL;
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}
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}
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#else
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#ifndef MTK_BL31_AS_BL2
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static struct mtk_bl31_fw_config bl31_fw_config;
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#else
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struct mtk_bl31_fw_config bl31_fw_config;
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#endif
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/* In order to be accessed after MMU enable */
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static struct mtk_bl_param_t bl_param_clone;
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void *get_mtk_bl31_fw_config(int index)
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{
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void *arg = NULL;
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switch (index) {
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case BOOT_ARG_FROM_BL2:
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arg = bl31_fw_config.from_bl2;
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break;
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case BOOT_ARG_SOC_FW_CONFIG:
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arg = bl31_fw_config.soc_fw_config;
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break;
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case BOOT_ARG_HW_CONFIG:
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arg = bl31_fw_config.hw_config;
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break;
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case BOOT_ARG_RESERVED:
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arg = bl31_fw_config.reserved;
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break;
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default:
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WARN("Fail to get boot arg, index:%d", index);
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break;
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}
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return arg;
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}
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#endif
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/*****************************************************************************
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* Perform the very early platform specific architectural setup shared between
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* ARM standard platforms. This only does basic initialization. Later
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* architectural setup (bl31_arch_setup()) does not do anything platform
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* specific.
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******************************************************************************/
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void bl31_early_platform_setup2(u_register_t from_bl2,
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u_register_t soc_fw_config,
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u_register_t hw_config, u_register_t plat_params_from_bl2)
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{
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#if COREBOOT
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static console_t console;
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params_early_setup(soc_fw_config);
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if (coreboot_serial.type) {
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console_16550_register(coreboot_serial.baseaddr,
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coreboot_serial.input_hertz,
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coreboot_serial.baud,
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&console);
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}
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bl31_params_parse_helper(from_bl2, &bl32_ep_info, &bl33_ep_info);
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#else
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struct mtk_bl_param_t *p_mtk_bl_param = (struct mtk_bl_param_t *)from_bl2;
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if (p_mtk_bl_param == NULL) {
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ERROR("from_bl2 should not be NULL\n");
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panic();
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}
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memcpy(&bl_param_clone, p_mtk_bl_param, sizeof(struct mtk_bl_param_t));
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bl31_fw_config.from_bl2 = (void *)&bl_param_clone;
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bl31_fw_config.soc_fw_config = (void *)soc_fw_config;
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bl31_fw_config.hw_config = (void *)hw_config;
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bl31_fw_config.reserved = (void *)plat_params_from_bl2;
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#endif
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INFO("MTK BL31 start\n");
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/* Init delay function */
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generic_delay_timer_init();
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/* Initialize module initcall */
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mtk_init_one_level(MTK_INIT_LVL_EARLY_PLAT);
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}
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void bl31_plat_arch_setup(void)
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{
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const mmap_region_t bl_regions[] = {
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MAP_BL_RO,
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MAP_BL_RW,
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#if USE_COHERENT_MEM
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MAP_BL_COHERENT_RAM,
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#endif
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{0},
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};
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mtk_xlat_init(bl_regions);
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/* Initialize module initcall */
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mtk_init_one_level(MTK_INIT_LVL_ARCH);
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}
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/*****************************************************************************
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* Perform any BL31 platform setup common to ARM standard platforms
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******************************************************************************/
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void bl31_platform_setup(void)
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{
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mtk_init_one_level(MTK_INIT_LVL_PLAT_SETUP_0);
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mtk_init_one_level(MTK_INIT_LVL_PLAT_SETUP_1);
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}
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/*******************************************************************************
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* Operations before cold CPU leave BL31.
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* Switch console to runtime state.
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******************************************************************************/
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void bl31_plat_runtime_setup(void)
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{
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mtk_init_one_level(MTK_INIT_LVL_PLAT_RUNTIME);
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}
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unsigned int plat_get_syscnt_freq2(void)
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{
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return SYS_COUNTER_FREQ_IN_HZ;
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}
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