42c44c2f83
This patch relying on new rule, ENV_PAYLOAD_LOADER which is set to ENV_RAMSTAGE. This approach will help to add future optimization (rampayload) in coreboot flow if required. Change-Id: Ib54ece7b9e5f281f8a092dc6f38c07406edfa5fa Signed-off-by: Subrata Banik <subrata.banik@intel.com> Reviewed-on: https://review.coreboot.org/c/coreboot/+/32725 Tested-by: build bot (Jenkins) <no-reply@coreboot.org> Reviewed-by: ron minnich <rminnich@gmail.com>
225 lines
4.8 KiB
C
225 lines
4.8 KiB
C
/*
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* This file is part of the coreboot project.
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*
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* Copyright 2015 Google Inc.
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; version 2 of the License.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* 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 <stdlib.h>
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#include <cbfs.h>
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#include <cbmem.h>
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#include <console/console.h>
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#include <fallback.h>
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#include <halt.h>
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#include <lib.h>
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#include <program_loading.h>
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#include <reset.h>
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#include <romstage_handoff.h>
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#include <rmodule.h>
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#include <stage_cache.h>
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#include <symbols.h>
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#include <timestamp.h>
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#include <fit_payload.h>
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/* Only can represent up to 1 byte less than size_t. */
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const struct mem_region_device addrspace_32bit =
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MEM_REGION_DEV_RO_INIT(0, ~0UL);
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int prog_locate(struct prog *prog)
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{
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struct cbfsf file;
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cbfs_prepare_program_locate();
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if (cbfs_boot_locate(&file, prog_name(prog), NULL))
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return -1;
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cbfsf_file_type(&file, &prog->cbfs_type);
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cbfs_file_data(prog_rdev(prog), &file);
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return 0;
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}
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void run_romstage(void)
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{
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struct prog romstage =
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PROG_INIT(PROG_ROMSTAGE, CONFIG_CBFS_PREFIX "/romstage");
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if (prog_locate(&romstage))
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goto fail;
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timestamp_add_now(TS_START_COPYROM);
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if (cbfs_prog_stage_load(&romstage))
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goto fail;
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timestamp_add_now(TS_END_COPYROM);
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prog_run(&romstage);
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fail:
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if (CONFIG(BOOTBLOCK_CONSOLE))
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die_with_post_code(POST_INVALID_ROM,
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"Couldn't load romstage.\n");
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halt();
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}
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static void ramstage_cache_invalid(void)
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{
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printk(BIOS_ERR, "ramstage cache invalid.\n");
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if (CONFIG(RESET_ON_INVALID_RAMSTAGE_CACHE)) {
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board_reset();
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}
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}
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static void run_ramstage_from_resume(struct prog *ramstage)
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{
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if (!romstage_handoff_is_resume())
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return;
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/* Load the cached ramstage to runtime location. */
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stage_cache_load_stage(STAGE_RAMSTAGE, ramstage);
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if (prog_entry(ramstage) != NULL) {
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printk(BIOS_DEBUG, "Jumping to image.\n");
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prog_run(ramstage);
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}
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ramstage_cache_invalid();
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}
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static int load_relocatable_ramstage(struct prog *ramstage)
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{
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struct rmod_stage_load rmod_ram = {
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.cbmem_id = CBMEM_ID_RAMSTAGE,
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.prog = ramstage,
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};
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return rmodule_stage_load(&rmod_ram);
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}
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static int load_nonrelocatable_ramstage(struct prog *ramstage)
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{
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if (CONFIG(HAVE_ACPI_RESUME)) {
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uintptr_t base = 0;
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size_t size = cbfs_prog_stage_section(ramstage, &base);
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if (size)
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backup_ramstage_section(base, size);
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}
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return cbfs_prog_stage_load(ramstage);
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}
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void run_ramstage(void)
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{
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struct prog ramstage =
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PROG_INIT(PROG_RAMSTAGE, CONFIG_CBFS_PREFIX "/ramstage");
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if (ENV_POSTCAR)
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timestamp_add_now(TS_END_POSTCAR);
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/* Call "end of romstage" here if postcar stage doesn't exist */
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if (ENV_ROMSTAGE)
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timestamp_add_now(TS_END_ROMSTAGE);
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/*
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* Only x86 systems using ramstage stage cache currently take the same
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* firmware path on resume.
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*/
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if (CONFIG(ARCH_X86) &&
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!CONFIG(NO_STAGE_CACHE))
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run_ramstage_from_resume(&ramstage);
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if (prog_locate(&ramstage))
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goto fail;
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timestamp_add_now(TS_START_COPYRAM);
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if (CONFIG(RELOCATABLE_RAMSTAGE)) {
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if (load_relocatable_ramstage(&ramstage))
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goto fail;
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} else if (load_nonrelocatable_ramstage(&ramstage))
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goto fail;
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stage_cache_add(STAGE_RAMSTAGE, &ramstage);
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timestamp_add_now(TS_END_COPYRAM);
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prog_run(&ramstage);
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fail:
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die_with_post_code(POST_INVALID_ROM, "Ramstage was not loaded!\n");
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}
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#if ENV_PAYLOAD_LOADER // gc-sections should take care of this
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static struct prog global_payload =
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PROG_INIT(PROG_PAYLOAD, CONFIG_CBFS_PREFIX "/payload");
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void __weak mirror_payload(struct prog *payload)
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{
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}
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void payload_load(void)
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{
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struct prog *payload = &global_payload;
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timestamp_add_now(TS_LOAD_PAYLOAD);
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if (prog_locate(payload))
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goto out;
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mirror_payload(payload);
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switch (prog_cbfs_type(payload)) {
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case CBFS_TYPE_SELF: /* Simple ELF */
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selfload_check(payload, BM_MEM_RAM);
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break;
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case CBFS_TYPE_FIT: /* Flattened image tree */
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if (CONFIG(PAYLOAD_FIT_SUPPORT)) {
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fit_payload(payload);
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break;
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} /* else fall-through */
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default:
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die_with_post_code(POST_INVALID_ROM,
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"Unsupported payload type.\n");
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break;
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}
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out:
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if (prog_entry(payload) == NULL)
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die_with_post_code(POST_INVALID_ROM, "Payload not loaded.\n");
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}
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void payload_run(void)
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{
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struct prog *payload = &global_payload;
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/* Reset to booting from this image as late as possible */
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boot_successful();
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printk(BIOS_DEBUG, "Jumping to boot code at %p(%p)\n",
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prog_entry(payload), prog_entry_arg(payload));
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post_code(POST_ENTER_ELF_BOOT);
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timestamp_add_now(TS_SELFBOOT_JUMP);
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/* Before we go off to run the payload, see if
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* we stayed within our bounds.
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*/
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checkstack(_estack, 0);
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prog_run(payload);
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}
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#endif
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