eboot.c 24.8 KB
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/* -----------------------------------------------------------------------
 *
 *   Copyright 2011 Intel Corporation; author Matt Fleming
 *
 *   This file is part of the Linux kernel, and is made available under
 *   the terms of the GNU General Public License version 2.
 *
 * ----------------------------------------------------------------------- */

#include <linux/efi.h>
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#include <linux/pci.h>
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#include <asm/efi.h>
#include <asm/setup.h>
#include <asm/desc.h>

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#undef memcpy			/* Use memcpy from misc.c */

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#include "eboot.h"

static efi_system_table_t *sys_table;

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static struct efi_config *efi_early;

#define BOOT_SERVICES(bits)						\
static void setup_boot_services##bits(struct efi_config *c)		\
{									\
	efi_system_table_##bits##_t *table;				\
	efi_boot_services_##bits##_t *bt;				\
									\
	table = (typeof(table))sys_table;				\
									\
	c->text_output = table->con_out;				\
									\
	bt = (typeof(bt))(unsigned long)(table->boottime);		\
									\
	c->allocate_pool = bt->allocate_pool;				\
	c->allocate_pages = bt->allocate_pages;				\
	c->get_memory_map = bt->get_memory_map;				\
	c->free_pool = bt->free_pool;					\
	c->free_pages = bt->free_pages;					\
	c->locate_handle = bt->locate_handle;				\
	c->handle_protocol = bt->handle_protocol;			\
	c->exit_boot_services = bt->exit_boot_services;			\
}
BOOT_SERVICES(32);
BOOT_SERVICES(64);
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static void efi_printk(efi_system_table_t *, char *);
static void efi_char16_printk(efi_system_table_t *, efi_char16_t *);

static efi_status_t
efi_file_size(efi_system_table_t *sys_table, void *__fh,
	      efi_char16_t *filename_16, void **handle, u64 *file_sz)
{
	efi_file_handle_t *h, *fh = __fh;
	efi_file_info_t *info;
	efi_status_t status;
	efi_guid_t info_guid = EFI_FILE_INFO_ID;
	u32 info_sz;

	status = efi_early->call((unsigned long)fh->open, fh, &h, filename_16,
				 EFI_FILE_MODE_READ, (u64)0);
	if (status != EFI_SUCCESS) {
		efi_printk(sys_table, "Failed to open file: ");
		efi_char16_printk(sys_table, filename_16);
		efi_printk(sys_table, "\n");
		return status;
	}

	*handle = h;

	info_sz = 0;
	status = efi_early->call((unsigned long)h->get_info, h, &info_guid,
				 &info_sz, NULL);
	if (status != EFI_BUFFER_TOO_SMALL) {
		efi_printk(sys_table, "Failed to get file info size\n");
		return status;
	}

grow:
	status = efi_early->call(efi_early->allocate_pool, EFI_LOADER_DATA,
				 info_sz, (void **)&info);
	if (status != EFI_SUCCESS) {
		efi_printk(sys_table, "Failed to alloc mem for file info\n");
		return status;
	}

	status = efi_early->call((unsigned long)h->get_info, h, &info_guid,
				 &info_sz, info);
	if (status == EFI_BUFFER_TOO_SMALL) {
		efi_early->call(efi_early->free_pool, info);
		goto grow;
	}

	*file_sz = info->file_size;
	efi_early->call(efi_early->free_pool, info);

	if (status != EFI_SUCCESS)
		efi_printk(sys_table, "Failed to get initrd info\n");

	return status;
}

static inline efi_status_t
efi_file_read(void *__fh, void *handle, unsigned long *size, void *addr)
{
	efi_file_handle_t *fh = __fh;
	return efi_early->call((unsigned long)fh->read, handle, size, addr);
}

static inline efi_status_t efi_file_close(void *__fh, void *handle)
{
	efi_file_handle_t *fh = __fh;
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	return efi_early->call((unsigned long)fh->close, handle);
}

static inline efi_status_t
efi_open_volume(efi_system_table_t *sys_table, void *__image, void **__fh)
{
	efi_file_io_interface_t *io;
	efi_loaded_image_t *image = __image;
	efi_file_handle_t *fh;
	efi_guid_t fs_proto = EFI_FILE_SYSTEM_GUID;
	efi_status_t status;
	void *handle = (void *)(unsigned long)image->device_handle;
	u32 func;

	status = efi_early->call(efi_early->handle_protocol, handle,
				 &fs_proto, (void **)&io);
	if (status != EFI_SUCCESS) {
		efi_printk(sys_table, "Failed to handle fs_proto\n");
		return status;
	}
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	func = (unsigned long)io->open_volume;
	status = efi_early->call(func, io, &fh);
	if (status != EFI_SUCCESS)
		efi_printk(sys_table, "Failed to open volume\n");

	*__fh = fh;
	return status;
}

static inline void
efi_char16_printk(efi_system_table_t *table, efi_char16_t *str)
{
	struct efi_simple_text_output_protocol *out;
	unsigned long output_string;
	size_t offset;
	unsigned long *func;

	offset = offsetof(typeof(*out), output_string);
	output_string = efi_early->text_output + offset;
	func = (unsigned long *)output_string;

	efi_early->call(*func, efi_early->text_output, str);
}

#include "../../../../drivers/firmware/efi/efi-stub-helper.c"
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static void find_bits(unsigned long mask, u8 *pos, u8 *size)
{
	u8 first, len;

	first = 0;
	len = 0;

	if (mask) {
		while (!(mask & 0x1)) {
			mask = mask >> 1;
			first++;
		}

		while (mask & 0x1) {
			mask = mask >> 1;
			len++;
		}
	}

	*pos = first;
	*size = len;
}

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static efi_status_t setup_efi_pci(struct boot_params *params)
{
	efi_pci_io_protocol *pci;
	efi_status_t status;
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	void **pci_handle = NULL;
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	efi_guid_t pci_proto = EFI_PCI_IO_PROTOCOL_GUID;
	unsigned long nr_pci, size = 0;
	int i;
	struct setup_data *data;

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	data = (struct setup_data *)(unsigned long)params->hdr.setup_data;
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	while (data && data->next)
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		data = (struct setup_data *)(unsigned long)data->next;
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	status = efi_early->call(efi_early->locate_handle,
				 EFI_LOCATE_BY_PROTOCOL,
				 &pci_proto, NULL, &size, pci_handle);
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	if (status == EFI_BUFFER_TOO_SMALL) {
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		status = efi_early->call(efi_early->allocate_pool,
					 EFI_LOADER_DATA,
					 size, (void **)&pci_handle);
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		if (status != EFI_SUCCESS)
			return status;

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		status = efi_early->call(efi_early->locate_handle,
					 EFI_LOCATE_BY_PROTOCOL, &pci_proto,
					 NULL, &size, pci_handle);
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	}

	if (status != EFI_SUCCESS)
		goto free_handle;

	nr_pci = size / sizeof(void *);
	for (i = 0; i < nr_pci; i++) {
		void *h = pci_handle[i];
		uint64_t attributes;
		struct pci_setup_rom *rom;

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		status = efi_early->call(efi_early->handle_protocol, h,
					 &pci_proto, (void **)&pci);
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		if (status != EFI_SUCCESS)
			continue;

		if (!pci)
			continue;

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#ifdef CONFIG_X86_64
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		status = efi_early->call((unsigned long)pci->attributes, pci,
					 EfiPciIoAttributeOperationGet, 0,
					 &attributes);
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#else
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		status = efi_early->call((unsigned long)pci->attributes, pci,
					 EfiPciIoAttributeOperationGet, 0, 0,
					 &attributes);
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#endif
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		if (status != EFI_SUCCESS)
			continue;

		if (!pci->romimage || !pci->romsize)
			continue;

		size = pci->romsize + sizeof(*rom);

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		status = efi_early->call(efi_early->allocate_pool,
					 EFI_LOADER_DATA, size, &rom);
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		if (status != EFI_SUCCESS)
			continue;

		rom->data.type = SETUP_PCI;
		rom->data.len = size - sizeof(struct setup_data);
		rom->data.next = 0;
		rom->pcilen = pci->romsize;

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		status = efi_early->call((unsigned long)pci->pci.read, pci,
					 EfiPciIoWidthUint16, PCI_VENDOR_ID,
					 1, &(rom->vendor));
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		if (status != EFI_SUCCESS)
			goto free_struct;

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		status = efi_early->call((unsigned long)pci->pci.read, pci,
					 EfiPciIoWidthUint16, PCI_DEVICE_ID,
					 1, &(rom->devid));
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		if (status != EFI_SUCCESS)
			goto free_struct;

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		status = efi_early->call((unsigned long)pci->get_location, pci,
					 &(rom->segment), &(rom->bus),
					 &(rom->device), &(rom->function));
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		if (status != EFI_SUCCESS)
			goto free_struct;

		memcpy(rom->romdata, pci->romimage, pci->romsize);

		if (data)
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			data->next = (unsigned long)rom;
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		else
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			params->hdr.setup_data = (unsigned long)rom;
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		data = (struct setup_data *)rom;

		continue;
	free_struct:
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		efi_early->call(efi_early->free_pool, rom);
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	}

free_handle:
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	efi_early->call(efi_early->free_pool, pci_handle);
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	return status;
}

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/*
 * See if we have Graphics Output Protocol
 */
static efi_status_t setup_gop(struct screen_info *si, efi_guid_t *proto,
			      unsigned long size)
{
	struct efi_graphics_output_protocol *gop, *first_gop;
	struct efi_pixel_bitmask pixel_info;
	unsigned long nr_gops;
	efi_status_t status;
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	void **gop_handle = NULL;
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	u16 width, height;
	u32 fb_base, fb_size;
	u32 pixels_per_scan_line;
	int pixel_format;
	int i;

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	status = efi_early->call(efi_early->allocate_pool, EFI_LOADER_DATA,
				 size, (void **)&gop_handle);
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	if (status != EFI_SUCCESS)
		return status;

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	status = efi_early->call(efi_early->locate_handle,
				 EFI_LOCATE_BY_PROTOCOL,
				 proto, NULL, &size, gop_handle);
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	if (status != EFI_SUCCESS)
		goto free_handle;

	first_gop = NULL;

	nr_gops = size / sizeof(void *);
	for (i = 0; i < nr_gops; i++) {
		struct efi_graphics_output_mode_info *info;
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		efi_guid_t conout_proto = EFI_CONSOLE_OUT_DEVICE_GUID;
		bool conout_found = false;
		void *dummy;
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		void *h = gop_handle[i];

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		status = efi_early->call(efi_early->handle_protocol, h,
					 proto, (void **)&gop);
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		if (status != EFI_SUCCESS)
			continue;

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		status = efi_early->call(efi_early->handle_protocol, h,
					 &conout_proto, &dummy);
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		if (status == EFI_SUCCESS)
			conout_found = true;
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		status = efi_early->call((unsigned long)gop->query_mode, gop,
					 gop->mode->mode, &size, &info);
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		if (status == EFI_SUCCESS && (!first_gop || conout_found)) {
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			/*
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			 * Systems that use the UEFI Console Splitter may
			 * provide multiple GOP devices, not all of which are
			 * backed by real hardware. The workaround is to search
			 * for a GOP implementing the ConOut protocol, and if
			 * one isn't found, to just fall back to the first GOP.
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			 */
			width = info->horizontal_resolution;
			height = info->vertical_resolution;
			fb_base = gop->mode->frame_buffer_base;
			fb_size = gop->mode->frame_buffer_size;
			pixel_format = info->pixel_format;
			pixel_info = info->pixel_information;
			pixels_per_scan_line = info->pixels_per_scan_line;

			/*
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			 * Once we've found a GOP supporting ConOut,
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			 * don't bother looking any further.
			 */
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			first_gop = gop;
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			if (conout_found)
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				break;
		}
	}

	/* Did we find any GOPs? */
	if (!first_gop)
		goto free_handle;

	/* EFI framebuffer */
	si->orig_video_isVGA = VIDEO_TYPE_EFI;

	si->lfb_width = width;
	si->lfb_height = height;
	si->lfb_base = fb_base;
	si->pages = 1;

	if (pixel_format == PIXEL_RGB_RESERVED_8BIT_PER_COLOR) {
		si->lfb_depth = 32;
		si->lfb_linelength = pixels_per_scan_line * 4;
		si->red_size = 8;
		si->red_pos = 0;
		si->green_size = 8;
		si->green_pos = 8;
		si->blue_size = 8;
		si->blue_pos = 16;
		si->rsvd_size = 8;
		si->rsvd_pos = 24;
	} else if (pixel_format == PIXEL_BGR_RESERVED_8BIT_PER_COLOR) {
		si->lfb_depth = 32;
		si->lfb_linelength = pixels_per_scan_line * 4;
		si->red_size = 8;
		si->red_pos = 16;
		si->green_size = 8;
		si->green_pos = 8;
		si->blue_size = 8;
		si->blue_pos = 0;
		si->rsvd_size = 8;
		si->rsvd_pos = 24;
	} else if (pixel_format == PIXEL_BIT_MASK) {
		find_bits(pixel_info.red_mask, &si->red_pos, &si->red_size);
		find_bits(pixel_info.green_mask, &si->green_pos,
			  &si->green_size);
		find_bits(pixel_info.blue_mask, &si->blue_pos, &si->blue_size);
		find_bits(pixel_info.reserved_mask, &si->rsvd_pos,
			  &si->rsvd_size);
		si->lfb_depth = si->red_size + si->green_size +
			si->blue_size + si->rsvd_size;
		si->lfb_linelength = (pixels_per_scan_line * si->lfb_depth) / 8;
	} else {
		si->lfb_depth = 4;
		si->lfb_linelength = si->lfb_width / 2;
		si->red_size = 0;
		si->red_pos = 0;
		si->green_size = 0;
		si->green_pos = 0;
		si->blue_size = 0;
		si->blue_pos = 0;
		si->rsvd_size = 0;
		si->rsvd_pos = 0;
	}

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	si->lfb_size = si->lfb_linelength * si->lfb_height;

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	si->capabilities |= VIDEO_CAPABILITY_SKIP_QUIRKS;

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free_handle:
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	efi_early->call(efi_early->free_pool, gop_handle);
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	return status;
}

/*
 * See if we have Universal Graphics Adapter (UGA) protocol
 */
static efi_status_t setup_uga(struct screen_info *si, efi_guid_t *uga_proto,
			      unsigned long size)
{
	struct efi_uga_draw_protocol *uga, *first_uga;
	unsigned long nr_ugas;
	efi_status_t status;
	u32 width, height;
	void **uga_handle = NULL;
	int i;

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	status = efi_early->call(efi_early->allocate_pool, EFI_LOADER_DATA,
				 size, (void **)&uga_handle);
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	if (status != EFI_SUCCESS)
		return status;

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	status = efi_early->call(efi_early->locate_handle,
				 EFI_LOCATE_BY_PROTOCOL,
				 uga_proto, NULL, &size, uga_handle);
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	if (status != EFI_SUCCESS)
		goto free_handle;

	first_uga = NULL;

	nr_ugas = size / sizeof(void *);
	for (i = 0; i < nr_ugas; i++) {
		efi_guid_t pciio_proto = EFI_PCI_IO_PROTOCOL_GUID;
		void *handle = uga_handle[i];
		u32 w, h, depth, refresh;
		void *pciio;

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		status = efi_early->call(efi_early->handle_protocol, handle,
					 uga_proto, (void **)&uga);
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		if (status != EFI_SUCCESS)
			continue;

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		efi_early->call(efi_early->handle_protocol, handle,
				&pciio_proto, &pciio);
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		status = efi_early->call((unsigned long)uga->get_mode, uga,
					 &w, &h, &depth, &refresh);
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		if (status == EFI_SUCCESS && (!first_uga || pciio)) {
			width = w;
			height = h;

			/*
			 * Once we've found a UGA supporting PCIIO,
			 * don't bother looking any further.
			 */
			if (pciio)
				break;

			first_uga = uga;
		}
	}

	if (!first_uga)
		goto free_handle;

	/* EFI framebuffer */
	si->orig_video_isVGA = VIDEO_TYPE_EFI;

	si->lfb_depth = 32;
	si->lfb_width = width;
	si->lfb_height = height;

	si->red_size = 8;
	si->red_pos = 16;
	si->green_size = 8;
	si->green_pos = 8;
	si->blue_size = 8;
	si->blue_pos = 0;
	si->rsvd_size = 8;
	si->rsvd_pos = 24;


free_handle:
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	efi_early->call(efi_early->free_pool, uga_handle);
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	return status;
}

void setup_graphics(struct boot_params *boot_params)
{
	efi_guid_t graphics_proto = EFI_GRAPHICS_OUTPUT_PROTOCOL_GUID;
	struct screen_info *si;
	efi_guid_t uga_proto = EFI_UGA_PROTOCOL_GUID;
	efi_status_t status;
	unsigned long size;
	void **gop_handle = NULL;
	void **uga_handle = NULL;

	si = &boot_params->screen_info;
	memset(si, 0, sizeof(*si));

	size = 0;
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	status = efi_early->call(efi_early->locate_handle,
				 EFI_LOCATE_BY_PROTOCOL,
				 &graphics_proto, NULL, &size, gop_handle);
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	if (status == EFI_BUFFER_TOO_SMALL)
		status = setup_gop(si, &graphics_proto, size);

	if (status != EFI_SUCCESS) {
		size = 0;
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		status = efi_early->call(efi_early->locate_handle,
					 EFI_LOCATE_BY_PROTOCOL,
					 &uga_proto, NULL, &size, uga_handle);
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		if (status == EFI_BUFFER_TOO_SMALL)
			setup_uga(si, &uga_proto, size);
	}
}

/*
 * Because the x86 boot code expects to be passed a boot_params we
 * need to create one ourselves (usually the bootloader would create
 * one for us).
 */
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struct boot_params *make_boot_params(struct efi_config *c)
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{
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	struct boot_params *boot_params;
	struct sys_desc_table *sdt;
	struct apm_bios_info *bi;
	struct setup_header *hdr;
	struct efi_info *efi;
	efi_loaded_image_t *image;
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	void *options, *handle;
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	efi_guid_t proto = LOADED_IMAGE_PROTOCOL_GUID;
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	int options_size = 0;
	efi_status_t status;
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	char *cmdline_ptr;
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	u16 *s2;
	u8 *s1;
	int i;
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	unsigned long ramdisk_addr;
	unsigned long ramdisk_size;
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	efi_early = c;
	sys_table = (efi_system_table_t *)(unsigned long)efi_early->table;
	handle = (void *)(unsigned long)efi_early->image_handle;
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	/* Check if we were booted by the EFI firmware */
	if (sys_table->hdr.signature != EFI_SYSTEM_TABLE_SIGNATURE)
		return NULL;

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	if (efi_early->is64)
		setup_boot_services64(efi_early);
	else
		setup_boot_services32(efi_early);

	status = efi_early->call(efi_early->handle_protocol, handle,
				 &proto, (void *)&image);
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	if (status != EFI_SUCCESS) {
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		efi_printk(sys_table, "Failed to get handle for LOADED_IMAGE_PROTOCOL\n");
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		return NULL;
	}

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	status = efi_low_alloc(sys_table, 0x4000, 1,
			       (unsigned long *)&boot_params);
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	if (status != EFI_SUCCESS) {
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		efi_printk(sys_table, "Failed to alloc lowmem for boot params\n");
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		return NULL;
	}

	memset(boot_params, 0x0, 0x4000);

	hdr = &boot_params->hdr;
	efi = &boot_params->efi_info;
	bi = &boot_params->apm_bios_info;
	sdt = &boot_params->sys_desc_table;

	/* Copy the second sector to boot_params */
	memcpy(&hdr->jump, image->image_base + 512, 512);

	/*
	 * Fill out some of the header fields ourselves because the
	 * EFI firmware loader doesn't load the first sector.
	 */
	hdr->root_flags = 1;
	hdr->vid_mode = 0xffff;
	hdr->boot_flag = 0xAA55;

	hdr->code32_start = (__u64)(unsigned long)image->image_base;

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	hdr->type_of_loader = 0x21;

	/* Convert unicode cmdline to ascii */
632 633 634 635 636
	cmdline_ptr = efi_convert_cmdline_to_ascii(sys_table, image,
						   &options_size);
	if (!cmdline_ptr)
		goto fail;
	hdr->cmd_line_ptr = (unsigned long)cmdline_ptr;
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	hdr->ramdisk_image = 0;
	hdr->ramdisk_size = 0;

	/* Clear APM BIOS info */
	memset(bi, 0, sizeof(*bi));

	memset(sdt, 0, sizeof(*sdt));

646 647 648 649
	status = handle_cmdline_files(sys_table, image,
				      (char *)(unsigned long)hdr->cmd_line_ptr,
				      "initrd=", hdr->initrd_addr_max,
				      &ramdisk_addr, &ramdisk_size);
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	if (status != EFI_SUCCESS)
		goto fail2;
652 653
	hdr->ramdisk_image = ramdisk_addr;
	hdr->ramdisk_size = ramdisk_size;
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	return boot_params;
fail2:
657
	efi_free(sys_table, options_size, hdr->cmd_line_ptr);
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fail:
659
	efi_free(sys_table, 0x4000, (unsigned long)boot_params);
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	return NULL;
}

663 664
static void add_e820ext(struct boot_params *params,
			struct setup_data *e820ext, u32 nr_entries)
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{
666
	struct setup_data *data;
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	efi_status_t status;
668
	unsigned long size;
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670 671 672
	e820ext->type = SETUP_E820_EXT;
	e820ext->len = nr_entries * sizeof(struct e820entry);
	e820ext->next = 0;
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674
	data = (struct setup_data *)(unsigned long)params->hdr.setup_data;
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676 677
	while (data && data->next)
		data = (struct setup_data *)(unsigned long)data->next;
678

679 680 681 682 683
	if (data)
		data->next = (unsigned long)e820ext;
	else
		params->hdr.setup_data = (unsigned long)e820ext;
}
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685 686 687 688 689 690 691 692 693
static efi_status_t setup_e820(struct boot_params *params,
			       struct setup_data *e820ext, u32 e820ext_size)
{
	struct e820entry *e820_map = &params->e820_map[0];
	struct efi_info *efi = &params->efi_info;
	struct e820entry *prev = NULL;
	u32 nr_entries;
	u32 nr_desc;
	int i;
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	nr_entries = 0;
696 697 698
	nr_desc = efi->efi_memmap_size / efi->efi_memdesc_size;

	for (i = 0; i < nr_desc; i++) {
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		efi_memory_desc_t *d;
		unsigned int e820_type = 0;
701
		unsigned long m = efi->efi_memmap;
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703
		d = (efi_memory_desc_t *)(m + (i * efi->efi_memdesc_size));
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		switch (d->type) {
		case EFI_RESERVED_TYPE:
		case EFI_RUNTIME_SERVICES_CODE:
		case EFI_RUNTIME_SERVICES_DATA:
		case EFI_MEMORY_MAPPED_IO:
		case EFI_MEMORY_MAPPED_IO_PORT_SPACE:
		case EFI_PAL_CODE:
			e820_type = E820_RESERVED;
			break;

		case EFI_UNUSABLE_MEMORY:
			e820_type = E820_UNUSABLE;
			break;

		case EFI_ACPI_RECLAIM_MEMORY:
			e820_type = E820_ACPI;
			break;

		case EFI_LOADER_CODE:
		case EFI_LOADER_DATA:
		case EFI_BOOT_SERVICES_CODE:
		case EFI_BOOT_SERVICES_DATA:
		case EFI_CONVENTIONAL_MEMORY:
			e820_type = E820_RAM;
			break;

		case EFI_ACPI_MEMORY_NVS:
			e820_type = E820_NVS;
			break;

		default:
			continue;
		}

		/* Merge adjacent mappings */
		if (prev && prev->type == e820_type &&
740
		    (prev->addr + prev->size) == d->phys_addr) {
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			prev->size += d->num_pages << 12;
742
			continue;
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		}
744 745 746 747 748 749 750 751 752 753 754 755 756 757 758 759 760

		if (nr_entries == ARRAY_SIZE(params->e820_map)) {
			u32 need = (nr_desc - i) * sizeof(struct e820entry) +
				   sizeof(struct setup_data);

			if (!e820ext || e820ext_size < need)
				return EFI_BUFFER_TOO_SMALL;

			/* boot_params map full, switch to e820 extended */
			e820_map = (struct e820entry *)e820ext->data;
		}

		e820_map->addr = d->phys_addr;
		e820_map->size = d->num_pages << PAGE_SHIFT;
		e820_map->type = e820_type;
		prev = e820_map++;
		nr_entries++;
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	}

763 764 765 766 767 768 769 770 771 772 773 774 775 776 777 778 779 780 781 782 783 784
	if (nr_entries > ARRAY_SIZE(params->e820_map)) {
		u32 nr_e820ext = nr_entries - ARRAY_SIZE(params->e820_map);

		add_e820ext(params, e820ext, nr_e820ext);
		nr_entries -= nr_e820ext;
	}

	params->e820_entries = (u8)nr_entries;

	return EFI_SUCCESS;
}

static efi_status_t alloc_e820ext(u32 nr_desc, struct setup_data **e820ext,
				  u32 *e820ext_size)
{
	efi_status_t status;
	unsigned long size;

	size = sizeof(struct setup_data) +
		sizeof(struct e820entry) * nr_desc;

	if (*e820ext) {
785
		efi_early->call(efi_early->free_pool, *e820ext);
786 787 788 789
		*e820ext = NULL;
		*e820ext_size = 0;
	}

790 791
	status = efi_early->call(efi_early->allocate_pool, EFI_LOADER_DATA,
				 size, (void **)e820ext);
792 793 794 795 796 797 798 799 800 801 802 803 804 805 806 807 808 809 810 811 812 813 814 815 816 817 818 819 820 821 822 823 824 825 826 827 828 829 830 831 832 833
	if (status == EFI_SUCCESS)
		*e820ext_size = size;

	return status;
}

static efi_status_t exit_boot(struct boot_params *boot_params,
			      void *handle)
{
	struct efi_info *efi = &boot_params->efi_info;
	unsigned long map_sz, key, desc_size;
	efi_memory_desc_t *mem_map;
	struct setup_data *e820ext;
	__u32 e820ext_size;
	__u32 nr_desc, prev_nr_desc;
	efi_status_t status;
	__u32 desc_version;
	bool called_exit = false;
	u8 nr_entries;
	int i;

	nr_desc = 0;
	e820ext = NULL;
	e820ext_size = 0;

get_map:
	status = efi_get_memory_map(sys_table, &mem_map, &map_sz, &desc_size,
				    &desc_version, &key);

	if (status != EFI_SUCCESS)
		return status;

	prev_nr_desc = nr_desc;
	nr_desc = map_sz / desc_size;
	if (nr_desc > prev_nr_desc &&
	    nr_desc > ARRAY_SIZE(boot_params->e820_map)) {
		u32 nr_e820ext = nr_desc - ARRAY_SIZE(boot_params->e820_map);

		status = alloc_e820ext(nr_e820ext, &e820ext, &e820ext_size);
		if (status != EFI_SUCCESS)
			goto free_mem_map;

834
		efi_early->call(efi_early->free_pool, mem_map);
835 836 837 838 839 840 841 842 843 844 845 846 847 848 849 850
		goto get_map; /* Allocated memory, get map again */
	}

	memcpy(&efi->efi_loader_signature, EFI_LOADER_SIGNATURE, sizeof(__u32));
	efi->efi_systab = (unsigned long)sys_table;
	efi->efi_memdesc_size = desc_size;
	efi->efi_memdesc_version = desc_version;
	efi->efi_memmap = (unsigned long)mem_map;
	efi->efi_memmap_size = map_sz;

#ifdef CONFIG_X86_64
	efi->efi_systab_hi = (unsigned long)sys_table >> 32;
	efi->efi_memmap_hi = (unsigned long)mem_map >> 32;
#endif

	/* Might as well exit boot services now */
851
	status = efi_early->call(efi_early->exit_boot_services, handle, key);
852 853 854 855 856 857 858 859 860 861 862 863
	if (status != EFI_SUCCESS) {
		/*
		 * ExitBootServices() will fail if any of the event
		 * handlers change the memory map. In which case, we
		 * must be prepared to retry, but only once so that
		 * we're guaranteed to exit on repeated failures instead
		 * of spinning forever.
		 */
		if (called_exit)
			goto free_mem_map;

		called_exit = true;
864
		efi_early->call(efi_early->free_pool, mem_map);
865 866 867 868 869 870 871 872 873
		goto get_map;
	}

	/* Historic? */
	boot_params->alt_mem_k = 32 * 1024;

	status = setup_e820(boot_params, e820ext, e820ext_size);
	if (status != EFI_SUCCESS)
		return status;
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	return EFI_SUCCESS;

free_mem_map:
878
	efi_early->call(efi_early->free_pool, mem_map);
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	return status;
}

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/*
 * On success we return a pointer to a boot_params structure, and NULL
 * on failure.
 */
886
struct boot_params *efi_main(struct efi_config *c,
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			     struct boot_params *boot_params)
{
889
	struct desc_ptr *gdt = NULL;
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	efi_loaded_image_t *image;
	struct setup_header *hdr = &boot_params->hdr;
	efi_status_t status;
	struct desc_struct *desc;
894 895 896 897 898 899 900 901 902
	void *handle;
	efi_system_table_t *_table;
	bool is64;

	efi_early = c;

	_table = (efi_system_table_t *)(unsigned long)efi_early->table;
	handle = (void *)(unsigned long)efi_early->image_handle;
	is64 = efi_early->is64;
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903 904 905 906 907 908 909

	sys_table = _table;

	/* Check if we were booted by the EFI firmware */
	if (sys_table->hdr.signature != EFI_SYSTEM_TABLE_SIGNATURE)
		goto fail;

910 911 912 913 914
	if (is64)
		setup_boot_services64(efi_early);
	else
		setup_boot_services32(efi_early);

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	setup_graphics(boot_params);
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917 918
	setup_efi_pci(boot_params);

919 920
	status = efi_early->call(efi_early->allocate_pool, EFI_LOADER_DATA,
				 sizeof(*gdt), (void **)&gdt);
921
	if (status != EFI_SUCCESS) {
922
		efi_printk(sys_table, "Failed to alloc mem for gdt structure\n");
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		goto fail;
924
	}
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	gdt->size = 0x800;
927
	status = efi_low_alloc(sys_table, gdt->size, 8,
928
			   (unsigned long *)&gdt->address);
929
	if (status != EFI_SUCCESS) {
930
		efi_printk(sys_table, "Failed to alloc mem for gdt\n");
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		goto fail;
932
	}
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933

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	/*
	 * If the kernel isn't already loaded at the preferred load
	 * address, relocate it.
	 */
	if (hdr->pref_address != hdr->code32_start) {
939 940 941 942 943
		unsigned long bzimage_addr = hdr->code32_start;
		status = efi_relocate_kernel(sys_table, &bzimage_addr,
					     hdr->init_size, hdr->init_size,
					     hdr->pref_address,
					     hdr->kernel_alignment);
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		if (status != EFI_SUCCESS)
			goto fail;
946 947 948

		hdr->pref_address = hdr->code32_start;
		hdr->code32_start = bzimage_addr;
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	}

	status = exit_boot(boot_params, handle);
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	if (status != EFI_SUCCESS)
		goto fail;

	memset((char *)gdt->address, 0x0, gdt->size);
	desc = (struct desc_struct *)gdt->address;

	/* The first GDT is a dummy and the second is unused. */
	desc += 2;

	desc->limit0 = 0xffff;
	desc->base0 = 0x0000;
	desc->base1 = 0x0000;
	desc->type = SEG_TYPE_CODE | SEG_TYPE_EXEC_READ;
	desc->s = DESC_TYPE_CODE_DATA;
	desc->dpl = 0;
	desc->p = 1;
	desc->limit = 0xf;
	desc->avl = 0;
	desc->l = 0;
	desc->d = SEG_OP_SIZE_32BIT;
	desc->g = SEG_GRANULARITY_4KB;
	desc->base2 = 0x00;

	desc++;
	desc->limit0 = 0xffff;
	desc->base0 = 0x0000;
	desc->base1 = 0x0000;
	desc->type = SEG_TYPE_DATA | SEG_TYPE_READ_WRITE;
	desc->s = DESC_TYPE_CODE_DATA;
	desc->dpl = 0;
	desc->p = 1;
	desc->limit = 0xf;
	desc->avl = 0;
	desc->l = 0;
	desc->d = SEG_OP_SIZE_32BIT;
	desc->g = SEG_GRANULARITY_4KB;
	desc->base2 = 0x00;

#ifdef CONFIG_X86_64
	/* Task segment value */
	desc++;
	desc->limit0 = 0x0000;
	desc->base0 = 0x0000;
	desc->base1 = 0x0000;
	desc->type = SEG_TYPE_TSS;
	desc->s = 0;
	desc->dpl = 0;
	desc->p = 1;
	desc->limit = 0x0;
	desc->avl = 0;
	desc->l = 0;
	desc->d = 0;
	desc->g = SEG_GRANULARITY_4KB;
	desc->base2 = 0x00;
#endif /* CONFIG_X86_64 */

	asm volatile("cli");
1009
	asm volatile ("lgdt %0" : : "m" (*gdt));
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1010 1011 1012 1013 1014

	return boot_params;
fail:
	return NULL;
}