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	Otherwise with GUID partition types you would end up with things like: .../HD(Part0,Sig6252c819-4624-4995-8d16-abc9cd5d4130)/HD(Part0,MBRType=02,SigType=02) Signed-off-by: Rob Clark <robdclark@gmail.com> [agraf: rebased] Signed-off-by: Alexander Graf <agraf@suse.de>
		
			
				
	
	
		
			305 lines
		
	
	
		
			7.3 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			305 lines
		
	
	
		
			7.3 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
/*
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 *  EFI device path interface
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 *
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 *  Copyright (c) 2017 Heinrich Schuchardt
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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 <efi_loader.h>
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#define MAC_OUTPUT_LEN 22
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#define UNKNOWN_OUTPUT_LEN 23
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#define MAX_NODE_LEN 512
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#define MAX_PATH_LEN 1024
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const efi_guid_t efi_guid_device_path_to_text_protocol =
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		EFI_DEVICE_PATH_TO_TEXT_PROTOCOL_GUID;
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static u16 *efi_str_to_u16(char *str)
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{
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	efi_uintn_t len;
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	u16 *out;
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	efi_status_t ret;
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	len = strlen(str) + 1;
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	ret = efi_allocate_pool(EFI_ALLOCATE_ANY_PAGES, len * sizeof(u16),
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				(void **)&out);
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	if (ret != EFI_SUCCESS)
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		return NULL;
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	ascii2unicode(out, str);
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	out[len - 1] = 0;
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	return out;
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}
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static char *dp_unknown(char *s, struct efi_device_path *dp)
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{
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	s += sprintf(s, "UNKNOWN(%04x,%04x)", dp->type, dp->sub_type);
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	return s;
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}
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static char *dp_hardware(char *s, struct efi_device_path *dp)
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{
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	switch (dp->sub_type) {
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	case DEVICE_PATH_SUB_TYPE_MEMORY: {
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		struct efi_device_path_memory *mdp =
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			(struct efi_device_path_memory *)dp;
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		s += sprintf(s, "MemoryMapped(0x%x,0x%llx,0x%llx)",
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			     mdp->memory_type,
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			     mdp->start_address,
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			     mdp->end_address);
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		break;
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	}
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	case DEVICE_PATH_SUB_TYPE_VENDOR: {
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		struct efi_device_path_vendor *vdp =
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			(struct efi_device_path_vendor *)dp;
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		s += sprintf(s, "VenHw(%pUl)", &vdp->guid);
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		break;
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	}
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	default:
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		s = dp_unknown(s, dp);
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		break;
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	}
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	return s;
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}
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static char *dp_acpi(char *s, struct efi_device_path *dp)
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{
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	switch (dp->sub_type) {
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	case DEVICE_PATH_SUB_TYPE_ACPI_DEVICE: {
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		struct efi_device_path_acpi_path *adp =
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			(struct efi_device_path_acpi_path *)dp;
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		s += sprintf(s, "Acpi(PNP%04x", EISA_PNP_NUM(adp->hid));
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		if (adp->uid)
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			s += sprintf(s, ",%d", adp->uid);
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		s += sprintf(s, ")");
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		break;
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	}
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	default:
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		s = dp_unknown(s, dp);
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		break;
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	}
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	return s;
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}
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static char *dp_msging(char *s, struct efi_device_path *dp)
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{
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	switch (dp->sub_type) {
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	case DEVICE_PATH_SUB_TYPE_MSG_USB: {
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		struct efi_device_path_usb *udp =
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			(struct efi_device_path_usb *)dp;
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		s += sprintf(s, "Usb(0x%x,0x%x)", udp->parent_port_number,
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			     udp->usb_interface);
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		break;
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	}
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	case DEVICE_PATH_SUB_TYPE_MSG_MAC_ADDR: {
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		struct efi_device_path_mac_addr *mdp =
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			(struct efi_device_path_mac_addr *)dp;
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		if (mdp->if_type != 0 && mdp->if_type != 1)
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			break;
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		s += sprintf(s, "MAC(%02x%02x%02x%02x%02x%02x,0x%1x)",
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			mdp->mac.addr[0], mdp->mac.addr[1],
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			mdp->mac.addr[2], mdp->mac.addr[3],
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			mdp->mac.addr[4], mdp->mac.addr[5],
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			mdp->if_type);
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		break;
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	}
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	case DEVICE_PATH_SUB_TYPE_MSG_USB_CLASS: {
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		struct efi_device_path_usb_class *ucdp =
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			(struct efi_device_path_usb_class *)dp;
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		s += sprintf(s, "USBClass(%x,%x,%x,%x,%x)",
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			ucdp->vendor_id, ucdp->product_id,
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			ucdp->device_class, ucdp->device_subclass,
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			ucdp->device_protocol);
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		break;
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	}
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	case DEVICE_PATH_SUB_TYPE_MSG_SD:
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	case DEVICE_PATH_SUB_TYPE_MSG_MMC: {
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		const char *typename =
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			(dp->sub_type == DEVICE_PATH_SUB_TYPE_MSG_SD) ?
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					"SDCard" : "MMC";
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		struct efi_device_path_sd_mmc_path *sddp =
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			(struct efi_device_path_sd_mmc_path *)dp;
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		s += sprintf(s, "%s(Slot%u)", typename, sddp->slot_number);
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		break;
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	}
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	default:
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		s = dp_unknown(s, dp);
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		break;
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	}
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	return s;
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}
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static char *dp_media(char *s, struct efi_device_path *dp)
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{
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	switch (dp->sub_type) {
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	case DEVICE_PATH_SUB_TYPE_HARD_DRIVE_PATH: {
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		struct efi_device_path_hard_drive_path *hddp =
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			(struct efi_device_path_hard_drive_path *)dp;
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		void *sig = hddp->partition_signature;
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		switch (hddp->signature_type) {
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		case SIG_TYPE_MBR:
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			s += sprintf(s, "HD(Part%d,Sig%08x)",
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				     hddp->partition_number,
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				     *(uint32_t *)sig);
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			break;
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		case SIG_TYPE_GUID:
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			s += sprintf(s, "HD(Part%d,Sig%pUl)",
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				     hddp->partition_number, sig);
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			break;
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		default:
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			s += sprintf(s, "HD(Part%d,MBRType=%02x,SigType=%02x)",
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				     hddp->partition_number, hddp->partmap_type,
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				     hddp->signature_type);
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			break;
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		}
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		break;
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	}
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	case DEVICE_PATH_SUB_TYPE_CDROM_PATH: {
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		struct efi_device_path_cdrom_path *cddp =
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			(struct efi_device_path_cdrom_path *)dp;
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		s += sprintf(s, "CDROM(0x%x)", cddp->boot_entry);
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		break;
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	}
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	case DEVICE_PATH_SUB_TYPE_FILE_PATH: {
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		struct efi_device_path_file_path *fp =
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			(struct efi_device_path_file_path *)dp;
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		int slen = (dp->length - sizeof(*dp)) / 2;
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		if (slen > MAX_NODE_LEN - 2)
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			slen = MAX_NODE_LEN - 2;
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		s += sprintf(s, "%-.*ls", slen, fp->str);
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		break;
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	}
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	default:
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		s = dp_unknown(s, dp);
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		break;
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	}
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	return s;
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}
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/*
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 * Converts a single node to a char string.
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 *
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 * @buffer		output buffer
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 * @dp			device path or node
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 * @return		end of string
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 */
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static char *efi_convert_single_device_node_to_text(
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		char *buffer,
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		struct efi_device_path *dp)
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{
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	char *str = buffer;
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	switch (dp->type) {
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	case DEVICE_PATH_TYPE_HARDWARE_DEVICE:
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		str = dp_hardware(str, dp);
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		break;
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	case DEVICE_PATH_TYPE_ACPI_DEVICE:
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		str = dp_acpi(str, dp);
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		break;
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	case DEVICE_PATH_TYPE_MESSAGING_DEVICE:
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		str = dp_msging(str, dp);
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		break;
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	case DEVICE_PATH_TYPE_MEDIA_DEVICE:
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		str = dp_media(str, dp);
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		break;
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	default:
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		str = dp_unknown(str, dp);
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	}
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	*str = '\0';
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	return str;
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}
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/*
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 * This function implements the ConvertDeviceNodeToText service of the
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 * EFI_DEVICE_PATH_TO_TEXT_PROTOCOL.
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 * See the Unified Extensible Firmware Interface (UEFI) specification
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 * for details.
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 *
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 * device_node		device node to be converted
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 * display_only		true if the shorter text represenation shall be used
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 * allow_shortcuts	true if shortcut forms may be used
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 * @return		text represenation of the device path
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 *			NULL if out of memory of device_path is NULL
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 */
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static uint16_t EFIAPI *efi_convert_device_node_to_text(
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		struct efi_device_path *device_node,
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		bool display_only,
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		bool allow_shortcuts)
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{
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	char str[MAX_NODE_LEN];
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	uint16_t *text = NULL;
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	EFI_ENTRY("%p, %d, %d", device_node, display_only, allow_shortcuts);
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	if (!device_node)
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		goto out;
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	efi_convert_single_device_node_to_text(str, device_node);
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	text = efi_str_to_u16(str);
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out:
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	EFI_EXIT(EFI_SUCCESS);
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	return text;
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}
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/*
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 * This function implements the ConvertDevicePathToText service of the
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 * EFI_DEVICE_PATH_TO_TEXT_PROTOCOL.
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 * See the Unified Extensible Firmware Interface (UEFI) specification
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 * for details.
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 *
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 * device_path		device path to be converted
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 * display_only		true if the shorter text represenation shall be used
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 * allow_shortcuts	true if shortcut forms may be used
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 * @return		text represenation of the device path
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 *			NULL if out of memory of device_path is NULL
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 */
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static uint16_t EFIAPI *efi_convert_device_path_to_text(
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		struct efi_device_path *device_path,
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		bool display_only,
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		bool allow_shortcuts)
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{
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	uint16_t *text = NULL;
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	char buffer[MAX_PATH_LEN];
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	char *str = buffer;
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	EFI_ENTRY("%p, %d, %d", device_path, display_only, allow_shortcuts);
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	if (!device_path)
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		goto out;
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	while (device_path &&
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	       str + MAX_NODE_LEN < buffer + MAX_PATH_LEN) {
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		*str++ = '/';
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		str = efi_convert_single_device_node_to_text(str, device_path);
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		device_path = efi_dp_next(device_path);
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	}
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	text = efi_str_to_u16(buffer);
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out:
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	EFI_EXIT(EFI_SUCCESS);
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	return text;
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}
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/* helper for debug prints.. efi_free_pool() the result. */
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uint16_t *efi_dp_str(struct efi_device_path *dp)
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{
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	return EFI_CALL(efi_convert_device_path_to_text(dp, true, true));
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}
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const struct efi_device_path_to_text_protocol efi_device_path_to_text = {
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	.convert_device_node_to_text = efi_convert_device_node_to_text,
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	.convert_device_path_to_text = efi_convert_device_path_to_text,
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};
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