コード例 #1
0
ファイル: fsp2_0.c プロジェクト: lynxis/coreboot-signed
asmlinkage void *car_stage_c_entry(void)
{
	struct postcar_frame pcf;
	bool s3wake;
	uintptr_t top_of_ram;
	uintptr_t top_of_low_usable_memory;

	post_code(0x20);
	console_init();

	/* Initialize DRAM */
	s3wake = fill_power_state() == ACPI_S3;
	fsp_memory_init(s3wake);

	/* Disable the ROM shadow 0x000e0000 - 0x000fffff */
	disable_rom_shadow();

	/* Initialize the PCIe bridges */
	pcie_init();

	if (postcar_frame_init(&pcf, 1*KiB))
		die("Unable to initialize postcar frame.\n");

	/* Locate the top of RAM */
	top_of_low_usable_memory = (uintptr_t) cbmem_top();
	top_of_ram = ALIGN(top_of_low_usable_memory, 16 * MiB);

	/* Cache postcar and ramstage */
	postcar_frame_add_mtrr(&pcf, top_of_ram - (16 * MiB), 16 * MiB,
		MTRR_TYPE_WRBACK);

	/* Cache RMU area */
	postcar_frame_add_mtrr(&pcf, (uintptr_t) top_of_low_usable_memory,
		0x10000, MTRR_TYPE_WRTHROUGH);

	/* Cache ESRAM */
	postcar_frame_add_mtrr(&pcf, 0x80000000, 0x80000, MTRR_TYPE_WRBACK);

	/* Cache SPI flash - Write protect not supported */
	postcar_frame_add_mtrr(&pcf, (uint32_t)(-CONFIG_ROM_SIZE),
		CONFIG_ROM_SIZE, MTRR_TYPE_WRTHROUGH);

	run_postcar_phase(&pcf);
	return NULL;
}
コード例 #2
0
ファイル: romstage.c プロジェクト: canistation/coreboot
asmlinkage void car_stage_entry(void)
{
	bool s3wake;
	struct postcar_frame pcf;
	uintptr_t top_of_ram;
	struct chipset_power_state *ps = pmc_get_power_state();

	console_init();

	/* Program MCHBAR, DMIBAR, GDXBAR and EDRAMBAR */
	systemagent_early_init();
	/* initialize Heci interface */
	heci_init(HECI1_BASE_ADDRESS);

	timestamp_add_now(TS_START_ROMSTAGE);
	s3wake = pmc_fill_power_state(ps) == ACPI_S3;
	fsp_memory_init(s3wake);
	pmc_set_disb();
	if (!s3wake)
		save_dimm_info();
	if (postcar_frame_init(&pcf, 1 * KiB))
		die("Unable to initialize postcar frame.\n");

	/*
	 * We need to make sure ramstage will be run cached. At this
	 * point exact location of ramstage in cbmem is not known.
	 * Instruct postcar to cache 16 megs under cbmem top which is
	 * a safe bet to cover ramstage.
	 */
	top_of_ram = (uintptr_t) cbmem_top();
	printk(BIOS_DEBUG, "top_of_ram = 0x%lx\n", top_of_ram);
	top_of_ram -= 16*MiB;
	postcar_frame_add_mtrr(&pcf, top_of_ram, 16*MiB, MTRR_TYPE_WRBACK);

	/* Cache the ROM as WP just below 4GiB. */
	postcar_frame_add_romcache(&pcf, MTRR_TYPE_WRPROT);

	run_postcar_phase(&pcf);
}
コード例 #3
0
/* setup_stack_and_mtrrs() determines the stack to use after
 * cache-as-ram is torn down as well as the MTRR settings to use. */
static void platform_enter_postcar(void)
{
	struct postcar_frame pcf;
	uintptr_t top_of_ram;

	if (postcar_frame_init(&pcf, ROMSTAGE_RAM_STACK_SIZE))
		die("Unable to initialize postcar frame.\n");
	/* Cache the ROM as WP just below 4GiB. */
	postcar_frame_add_mtrr(&pcf, CACHE_ROM_BASE, CACHE_ROM_SIZE,
			       MTRR_TYPE_WRPROT);

	/* Cache RAM as WB from 0 -> CACHE_TMP_RAMTOP. */
	postcar_frame_add_mtrr(&pcf, 0, CACHE_TMP_RAMTOP, MTRR_TYPE_WRBACK);

	/* Cache at least 8 MiB below the top of ram, and at most 8 MiB
	 * above top of the ram. This satisfies MTRR alignment requirement
	 * with different TSEG size configurations.
	 */
	top_of_ram = ALIGN_DOWN((uintptr_t)cbmem_top(), 8*MiB);
	postcar_frame_add_mtrr(&pcf, top_of_ram - 8*MiB, 16*MiB,
			       MTRR_TYPE_WRBACK);

	run_postcar_phase(&pcf);
}
コード例 #4
0
asmlinkage void car_stage_entry(void)
{
	struct postcar_frame pcf;
	uintptr_t top_of_ram;
	bool s3wake;
	struct chipset_power_state *ps = car_get_var_ptr(&power_state);
	void *smm_base;
	size_t smm_size, var_size;
	const void *new_var_data;
	uintptr_t tseg_base;

	timestamp_add_now(TS_START_ROMSTAGE);

	soc_early_romstage_init();
	disable_watchdog();

	console_init();

	s3wake = fill_power_state(ps) == ACPI_S3;
	fsp_memory_init(s3wake);

	if (punit_init())
		set_max_freq();
	else
		printk(BIOS_DEBUG, "Punit failed to initialize properly\n");

	/* Stash variable MRC data and let cache system update it later */
	new_var_data = fsp_find_extension_hob_by_guid(hob_variable_guid,
							&var_size);
	if (new_var_data)
		mrc_cache_stash_vardata(new_var_data, var_size,
					car_get_var(fsp_version));
	else
		printk(BIOS_ERR, "Failed to determine variable data\n");

	if (postcar_frame_init(&pcf, 1*KiB))
		die("Unable to initialize postcar frame.\n");

	mainboard_save_dimm_info();

	/*
	 * We need to make sure ramstage will be run cached. At this point exact
	 * location of ramstage in cbmem is not known. Instruct postcar to cache
	 * 16 megs under cbmem top which is a safe bet to cover ramstage.
	 */
	top_of_ram = (uintptr_t) cbmem_top();
	/* cbmem_top() needs to be at least 16 MiB aligned */
	assert(ALIGN_DOWN(top_of_ram, 16*MiB) == top_of_ram);
	postcar_frame_add_mtrr(&pcf, top_of_ram - 16*MiB, 16*MiB, MTRR_TYPE_WRBACK);

	/* Cache the memory-mapped boot media. */
	if (IS_ENABLED(CONFIG_BOOT_DEVICE_MEMORY_MAPPED))
		postcar_frame_add_mtrr(&pcf, -CONFIG_ROM_SIZE, CONFIG_ROM_SIZE,
					MTRR_TYPE_WRPROT);

	/*
	* Cache the TSEG region at the top of ram. This region is
	* not restricted to SMM mode until SMM has been relocated.
	* By setting the region to cacheable it provides faster access
	* when relocating the SMM handler as well as using the TSEG
	* region for other purposes.
	*/
	smm_region(&smm_base, &smm_size);
	tseg_base = (uintptr_t)smm_base;
	postcar_frame_add_mtrr(&pcf, tseg_base, smm_size, MTRR_TYPE_WRBACK);

	run_postcar_phase(&pcf);
}
コード例 #5
0
ファイル: romstage.c プロジェクト: AdriDlu/coreboot
asmlinkage void car_stage_entry(void)
{
	void *hob_list_ptr;
	const void *mrc_data;
	struct range_entry fsp_mem, reg_car;
	struct postcar_frame pcf;
	size_t  mrc_data_size;
	uintptr_t top_of_ram;
	int prev_sleep_state;
	struct romstage_handoff *handoff;
	struct chipset_power_state *ps = car_get_var_ptr(&power_state);

	timestamp_add_now(TS_START_ROMSTAGE);

	soc_early_romstage_init();
	disable_watchdog();

	console_init();

	prev_sleep_state = fill_power_state(ps);

	/* Make sure the blob does not override our data in CAR */
	range_entry_init(&reg_car, (uintptr_t)_car_relocatable_data_end,
			(uintptr_t)_car_region_end, 0);

	if (fsp_memory_init(&hob_list_ptr, &reg_car) != FSP_SUCCESS) {
		die("FSP memory init failed. Giving up.");
	}

	fsp_find_reserved_memory(&fsp_mem, hob_list_ptr);

	/* initialize cbmem by adding FSP reserved memory first thing */
	if (prev_sleep_state != SLEEP_STATE_S3) {
		cbmem_initialize_empty_id_size(CBMEM_ID_FSP_RESERVED_MEMORY,
			range_entry_size(&fsp_mem));
	} else if (cbmem_initialize_id_size(CBMEM_ID_FSP_RESERVED_MEMORY,
				range_entry_size(&fsp_mem))) {
		if (IS_ENABLED(CONFIG_HAVE_ACPI_RESUME)) {
			printk(BIOS_DEBUG, "Failed to recover CBMEM in S3 resume.\n");
			/* Failed S3 resume, reset to come up cleanly */
			hard_reset();
		}
	}

	/* make sure FSP memory is reserved in cbmem */
	if (range_entry_base(&fsp_mem) !=
		(uintptr_t)cbmem_find(CBMEM_ID_FSP_RESERVED_MEMORY))
		die("Failed to accommodate FSP reserved memory request");

	/* Now that CBMEM is up, save the list so ramstage can use it */
	fsp_save_hob_list(hob_list_ptr);

	/* Save MRC Data to CBMEM */
	if (IS_ENABLED(CONFIG_CACHE_MRC_SETTINGS) &&
	    (prev_sleep_state != SLEEP_STATE_S3))
	{
		mrc_data = fsp_find_nv_storage_data(&mrc_data_size);
		if (mrc_data && mrc_cache_stash_data(mrc_data, mrc_data_size) < 0)
			printk(BIOS_ERR, "Failed to stash MRC data\n");
	}

	/* Create romstage handof information */
	handoff = romstage_handoff_find_or_add();
	if (handoff != NULL)
		handoff->s3_resume = (prev_sleep_state == SLEEP_STATE_S3);
	else
		printk(BIOS_DEBUG, "Romstage handoff structure not added!\n");

	if (postcar_frame_init(&pcf, 1*KiB))
		die("Unable to initialize postcar frame.\n");

	/*
	 * We need to make sure ramstage will be run cached. At this point exact
	 * location of ramstage in cbmem is not known. Instruct postcar to cache
	 * 16 megs under cbmem top which is a safe bet to cover ramstage.
	 */
	top_of_ram = (uintptr_t) cbmem_top();
	/* cbmem_top() needs to be at least 16 MiB aligned */
	assert(ALIGN_DOWN(top_of_ram, 16*MiB) == top_of_ram);
	postcar_frame_add_mtrr(&pcf, top_of_ram - 16*MiB, 16*MiB, MTRR_TYPE_WRBACK);

	run_postcar_phase(&pcf);
}